Merge branch '71-merge-dashboard-and-dashboard-backend-repos' into 'main'

Resolve "Merge dashboard and dashboard-backend repos"

Closes #1, #14, and #33

See merge request stackspin/dashboard!55
This commit is contained in:
Varac 2022-10-12 13:10:22 +00:00
commit e89975495f
91 changed files with 26547 additions and 8 deletions

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@ -1,3 +1,4 @@
.eslintrc.js .eslintrc.js
node_modules node_modules
tailwind.config.js tailwind.config.js
backend

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@ -14,7 +14,6 @@ image: node:14-alpine
variables: variables:
CHART_NAME: stackspin-dashboard CHART_NAME: stackspin-dashboard
CHART_DIR: deployment/helmchart/ CHART_DIR: deployment/helmchart/
KANIKO_BUILD_IMAGENAME: dashboard
build-project: build-project:
stage: build-project stage: build-project
@ -33,16 +32,38 @@ build-project:
paths: paths:
- web-build - web-build
build-container: .kaniko-build:
script:
- cd ${DIRECTORY}
- echo "{\"auths\":{\"$CI_REGISTRY\":{\"username\":\"$CI_REGISTRY_USER\",\"password\":\"$CI_REGISTRY_PASSWORD\"}}}" > /kaniko/.docker/config.json
- export CONTAINER_TAG=${CI_COMMIT_TAG:-${CI_COMMIT_REF_SLUG}}
- /kaniko/executor --cache=true --context ${CI_PROJECT_DIR}/${DIRECTORY} --destination ${CI_REGISTRY_IMAGE}/${KANIKO_BUILD_IMAGENAME}:${CONTAINER_TAG}
build-fontend-container:
stage: build-container stage: build-container
image: image:
# We need a shell to provide the registry credentials, so we need to use the # We need a shell to provide the registry credentials, so we need to use the
# kaniko debug image (https://github.com/GoogleContainerTools/kaniko#debug-image) # kaniko debug image (https://github.com/GoogleContainerTools/kaniko#debug-image)
name: gcr.io/kaniko-project/executor:debug name: gcr.io/kaniko-project/executor:debug
entrypoint: [""] entrypoint: [""]
script: variables:
- cp deployment/Dockerfile web-build KANIKO_BUILD_IMAGENAME: dashboard
- cp deployment/nginx.conf web-build DIRECTORY: web-build
- cd web-build before_script:
- echo "{\"auths\":{\"$CI_REGISTRY\":{\"username\":\"$CI_REGISTRY_USER\",\"password\":\"$CI_REGISTRY_PASSWORD\"}}}" > /kaniko/.docker/config.json - cp deployment/Dockerfile $DIRECTORY
- /kaniko/executor --cache=true --context ${CI_PROJECT_DIR}/web-build --destination ${CI_REGISTRY_IMAGE}/${KANIKO_BUILD_IMAGENAME}:${CI_COMMIT_REF_SLUG} - cp deployment/nginx.conf $DIRECTORY
extends:
.kaniko-build
build-backend-container:
stage: build-container
variables:
KANIKO_BUILD_IMAGENAME: dashboard-backend
DIRECTORY: backend
image:
# We need a shell to provide the registry credentials, so we need to use the
# kaniko debug image (https://github.com/GoogleContainerTools/kaniko#debug-image)
name: gcr.io/kaniko-project/executor:debug
entrypoint: [""]
extends:
.kaniko-build

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backend/.gitignore vendored Normal file
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@ -0,0 +1,10 @@
.venv
.idea
.vscode
__pycache__
*.pyc
.DS_Store
*.swp
.envrc
.direnv
run_app.local.sh

10
backend/.pylintrc Normal file
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@ -0,0 +1,10 @@
[MAIN]
# List of plugins (as comma separated values of python module names) to load,
# usually to register additional checkers.
load-plugins=pylint_flask,pylint_flask_sqlalchemy
# List of class names for which member attributes should not be checked (useful
# for classes with dynamically set attributes). This supports the use of
# qualified names.
ignored-classes=optparse.Values,thread._local,_thread._local,argparse.Namespace,scoped_session

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backend/Dockerfile Normal file
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@ -0,0 +1,25 @@
FROM python:3.10-slim
RUN apt-get update
RUN apt-get install -y gcc
## make a local directory
RUN mkdir /app
# set "app" as the working directory from which CMD, RUN, ADD references
WORKDIR /app
# copy requirements.txt to /app
ADD requirements.txt .
# pip install the local requirements.txt
RUN pip install -r requirements.txt
# now copy all the files in this directory to /code
ADD . .
# Listen to port 80 at runtime
EXPOSE 5000
# Define our command to be run when launching the container
CMD ["gunicorn", "app:app", "-b", "0.0.0.0:5000", "--workers", "4", "--reload", "--capture-output", "--enable-stdio-inheritance", "--log-level", "DEBUG"]

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backend/LICENSE Normal file
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@ -0,0 +1,661 @@
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GNU Affero General Public License, you may choose any version ever published
by the Free Software Foundation.
If the Program specifies that a proxy can decide which future
versions of the GNU Affero General Public License can be used, that proxy's
public statement of acceptance of a version permanently authorizes you
to choose that version for the Program.
Later license versions may give you additional or different
permissions. However, no additional obligations are imposed on any
author or copyright holder as a result of your choosing to follow a
later version.
15. Disclaimer of Warranty.
THERE IS NO WARRANTY FOR THE PROGRAM, TO THE EXTENT PERMITTED BY
APPLICABLE LAW. EXCEPT WHEN OTHERWISE STATED IN WRITING THE COPYRIGHT
HOLDERS AND/OR OTHER PARTIES PROVIDE THE PROGRAM "AS IS" WITHOUT WARRANTY
OF ANY KIND, EITHER EXPRESSED OR IMPLIED, INCLUDING, BUT NOT LIMITED TO,
THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
PURPOSE. THE ENTIRE RISK AS TO THE QUALITY AND PERFORMANCE OF THE PROGRAM
IS WITH YOU. SHOULD THE PROGRAM PROVE DEFECTIVE, YOU ASSUME THE COST OF
ALL NECESSARY SERVICING, REPAIR OR CORRECTION.
16. Limitation of Liability.
IN NO EVENT UNLESS REQUIRED BY APPLICABLE LAW OR AGREED TO IN WRITING
WILL ANY COPYRIGHT HOLDER, OR ANY OTHER PARTY WHO MODIFIES AND/OR CONVEYS
THE PROGRAM AS PERMITTED ABOVE, BE LIABLE TO YOU FOR DAMAGES, INCLUDING ANY
GENERAL, SPECIAL, INCIDENTAL OR CONSEQUENTIAL DAMAGES ARISING OUT OF THE
USE OR INABILITY TO USE THE PROGRAM (INCLUDING BUT NOT LIMITED TO LOSS OF
DATA OR DATA BEING RENDERED INACCURATE OR LOSSES SUSTAINED BY YOU OR THIRD
PARTIES OR A FAILURE OF THE PROGRAM TO OPERATE WITH ANY OTHER PROGRAMS),
EVEN IF SUCH HOLDER OR OTHER PARTY HAS BEEN ADVISED OF THE POSSIBILITY OF
SUCH DAMAGES.
17. Interpretation of Sections 15 and 16.
If the disclaimer of warranty and limitation of liability provided
above cannot be given local legal effect according to their terms,
reviewing courts shall apply local law that most closely approximates
an absolute waiver of all civil liability in connection with the
Program, unless a warranty or assumption of liability accompanies a
copy of the Program in return for a fee.
END OF TERMS AND CONDITIONS
How to Apply These Terms to Your New Programs
If you develop a new program, and you want it to be of the greatest
possible use to the public, the best way to achieve this is to make it
free software which everyone can redistribute and change under these terms.
To do so, attach the following notices to the program. It is safest
to attach them to the start of each source file to most effectively
state the exclusion of warranty; and each file should have at least
the "copyright" line and a pointer to where the full notice is found.
bootstrap
Copyright (C) 2019 Stackspin
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU Affero General Public License as published
by the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU Affero General Public License for more details.
You should have received a copy of the GNU Affero General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
Also add information on how to contact you by electronic and paper mail.
If your software can interact with users remotely through a computer
network, you should also make sure that it provides a way for users to
get its source. For example, if your program is a web application, its
interface could display a "Source" link that leads users to an archive
of the code. There are many ways you could offer source, and different
solutions will be better for different programs; see section 13 for the
specific requirements.
You should also get your employer (if you work as a programmer) or school,
if any, to sign a "copyright disclaimer" for the program, if necessary.
For more information on this, and how to apply and follow the GNU AGPL, see
<http://www.gnu.org/licenses/>.

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# Stackspin dashboard backend
Backend for the [Stackspin dashboard](https://open.greenhost.net/stackspin/dashboard)
## Login application
Apart from the dashboard backend this repository contains a flask application
that functions as the identity provider, login, consent and logout endpoints
for the OpenID Connect (OIDC) process.
The application relies on the following components:
- **Hydra**: Hydra is an open source OIDC server.
It means applications can connect to Hydra to start a session with a user.
Hydra provides the application with the username
and other roles/claims for the application.
Hydra is developed by Ory and has security as one of their top priorities.
- **Kratos**: This is Identity Manager
and contains all the user profiles and secrets (passwords).
Kratos is designed to work mostly between UI (browser) and kratos directly,
over a public API endpoint.
Authentication, form-validation, etc. are all handled by Kratos.
Kratos only provides an API and not UI itself.
Kratos provides an admin API as well,
which is only used from the server-side flask app to create/delete users.
- **MariaDB**: The login application, as well as Hydra and Kratos, need to store data.
This is done in a MariaDB database server.
There is one instance with three databases.
As all databases are very small we do not foresee resource limitation problems.
If Hydra hits a new session/user, it has to know if this user has access.
To do so, the user has to login through a login application.
This application is developed by the Stackspin team (Greenhost)
and is part of this repository.
It is a Python Flask application
The application follows flows defined in Kratos,
and as such a lot of the interaction is done in the web-browser,
rather then server-side.
As a result,
the login application has a UI component which relies heavily on JavaScript.
As this is a relatively small application,
it is based on traditional Bootstrap + JQuery.
# Development
To develop the Dashboard,
you need a Stackspin cluster that is set up as a development environment.
Follow the instructions [in the dashboard-dev-overrides
repository](https://open.greenhost.net/stackspin/dashboard-dev-overrides#dashboard-dev-overrides)
in order to set up a development-capable cluster.
The end-points for the Dashboard,
as well as Kratos and Hydra, will point to `http://stackspin_proxy:8081` in that cluster.
As a result, you can run components using the `docker-compose` file in
this repository, and still log into Stackspin applications that run on the cluster.
## Setting up the local development environment
After this process is finished, the following will run locally:
- The [dashboard](https://open.greenhost.net/stackspin/dashboard)
- The
[dashboard-backend](https://open.greenhost.net/stackspin/dashboard-backend)
The following will be available locally through a proxy and port-forwards:
- Hydra admin
- Kratos admin and public
- The MariaDB database connections
These need to be available locally, because Kratos wants to run on the same
domain as the front-end that serves the login interface.
### 1. Setup hosts file
The application will run on `http://stackspin_proxy`. Add the following line to
`/etc/hosts` to be able to access that from your browser:
```
127.0.0.1 stackspin_proxy
```
### 2. Kubernetes access
The script needs you to have access to the Kubernetes cluster that runs
Stackspin. Point the `KUBECONFIG` environment variable to a kubectl config. That
kubeconfig will be mounted inside docker containers, so also make sure your
Docker user can read it.
### 3. Run it all
Now, run this script that sets a few environment variables based on what is in
your cluster secrets, and starts `docker-compose` to start a reverse proxy as
well as the flask application in this repository.
```
./run_app.sh
```
### 4. Front-end developmenet
Start the [dashboard front-end app](https://open.greenhost.net/stackspin/dashboard/#yarn-start).

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from flask import Flask, jsonify
from flask_cors import CORS
from flask_jwt_extended import JWTManager
from flask_migrate import Migrate
from jsonschema.exceptions import ValidationError
from werkzeug.exceptions import BadRequest
# These imports are required
from areas import api_v1
from cliapp import cli
from web import web
from areas import users
from areas import apps
from areas import auth
from areas import roles
from cliapp import cliapp
from web import login
from database import db
from helpers import (
BadRequest,
KratosError,
HydraError,
Unauthorized,
bad_request_error,
validation_error,
kratos_error,
global_error,
hydra_error,
unauthorized_error,
)
from config import *
import logging
app = Flask(__name__)
app.config["SECRET_KEY"] = SECRET_KEY
app.config["SQLALCHEMY_DATABASE_URI"] = SQLALCHEMY_DATABASE_URI
app.config["SQLALCHEMY_TRACK_MODIFICATIONS"] = SQLALCHEMY_TRACK_MODIFICATIONS
cors = CORS(app)
Migrate(app, db)
db.init_app(app)
app.logger.setLevel(logging.INFO)
app.register_blueprint(api_v1)
app.register_blueprint(web)
app.register_blueprint(cli)
# Error handlers
app.register_error_handler(Exception, global_error)
app.register_error_handler(BadRequest, bad_request_error)
app.register_error_handler(ValidationError, validation_error)
app.register_error_handler(KratosError, kratos_error)
app.register_error_handler(HydraError, hydra_error)
app.register_error_handler(Unauthorized, unauthorized_error)
jwt = JWTManager(app)
# When token is not valid or missing handler
@jwt.invalid_token_loader
@jwt.unauthorized_loader
@jwt.expired_token_loader
def expired_token_callback(*args):
return jsonify({"errorMessage": "Unauthorized"}), 401
@app.route("/")
def index():
return "Stackspin API v1.0"

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from flask import Blueprint
api_v1 = Blueprint("api_v1", __name__, url_prefix="/api/v1")
@api_v1.route("/")
@api_v1.route("/health")
def api_index():
return "Stackspin API v1.0"

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from .apps import *
from .apps_service import *
from .models import *

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from flask import jsonify
from flask_jwt_extended import jwt_required
from flask_cors import cross_origin
from areas import api_v1
from .apps_service import AppsService
CONFIG_DATA = [
{
"id": "values.yml",
"description": "Some user friendly description",
"raw": "cronjob:\n # Set curl to accept insecure connections when acme staging is used\n curlInsecure: false",
"fields": [
{"name": "cronjob", "type": "string", "value": ""},
{"name": "curlInsecure", "type": "boolean", "value": "false"}
]
}
]
@api_v1.route('/apps', methods=['GET'])
@jwt_required()
@cross_origin()
def get_apps():
"""Return data about all apps"""
apps = AppsService.get_all_apps()
return jsonify(apps)
@api_v1.route('/apps/<string:slug>', methods=['GET'])
@jwt_required()
def get_app(slug):
"""Return data about a single app"""
app = AppsService.get_app(slug)
return jsonify(app)
@api_v1.route('/apps', methods=['POST'])
@jwt_required()
@cross_origin()
def post_app():
"""Unused function, returns bogus data for now"""
return jsonify([]), 201
@api_v1.route('/apps/<string:slug>', methods=['PUT'])
@jwt_required()
@cross_origin()
def put_app(slug):
"""Unused function, returns bogus data for now"""
return jsonify([])
@api_v1.route('/apps/<string:slug>/config', methods=['GET'])
@jwt_required()
@cross_origin()
def get_config(slug):
"""Returns bogus config data"""
return jsonify(CONFIG_DATA)
@api_v1.route('/apps/<string:slug>/config', methods=['DELETE'])
@jwt_required()
@cross_origin()
def delete_config(slug):
"""Does nothing, then returns bogus config data"""
return jsonify(CONFIG_DATA)

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from .models import App, AppRole
class AppsService:
@staticmethod
def get_all_apps():
apps = App.query.all()
return [app.to_dict() for app in apps]
@staticmethod
def get_app(slug):
app = App.query.filter_by(slug=slug).first()
return app.to_dict()
@staticmethod
def get_app_roles():
app_roles = AppRole.query.all()
return [{"user_id": app_role.user_id, "app_id": app_role.app_id, "role_id": app_role.role_id} for app_role in app_roles]

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"""Everything to do with Apps"""
import os
import base64
from sqlalchemy import ForeignKey, Integer, String, Boolean
from sqlalchemy.orm import relationship
from database import db
import helpers.kubernetes as k8s
DEFAULT_APP_SUBDOMAINS = {
"nextcloud": "files",
"wordpress": "www",
"monitoring": "grafana",
}
class App(db.Model):
"""
The App object, interact with the App database object. Data is stored in
the local database.
"""
id = db.Column(Integer, primary_key=True)
name = db.Column(String(length=64))
slug = db.Column(String(length=64), unique=True)
external = db.Column(Boolean, unique=False, nullable=False, server_default='0')
# The URL is only stored in the DB for external applications; otherwise the
# URL is stored in a configmap (see get_url)
url = db.Column(String(length=128), unique=False)
def __repr__(self):
return f"{self.id} <{self.name}>"
def get_url(self):
"""
Returns the URL where this application is running
For external applications: the URL is stored in the database
For internal applications: the URL is stored in a configmap named
`stackspin-{self.slug}-kustomization-variables under
`{self.slug_domain}`. This function reads that configmap. If the
configmap does not contain a URL for the application (which is
possible, if the app is not installed yet, for example), we return a
default URL.
"""
if self.external:
return self.url
# Get domain name from configmap
ks_config_map = k8s.get_kubernetes_config_map_data(
f"stackspin-{self.slug}-kustomization-variables",
"flux-system")
domain_key = f"{self.slug}_domain"
# If config map found with this domain name for this service, return
# that URL
if ks_config_map and domain_key in ks_config_map.keys():
return f"https://{ks_config_map[domain_key]}"
domain_secret = k8s.get_kubernetes_secret_data(
"stackspin-cluster-variables",
"flux-system")
domain = base64.b64decode(domain_secret['domain']).decode()
# See if there is another default subdomain for this app than just
# "slug.{domain}"
if self.slug in DEFAULT_APP_SUBDOMAINS:
return f"https://{DEFAULT_APP_SUBDOMAINS[self.slug]}.{domain}"
# No default known
return f"https://{self.slug}.{domain}"
def get_status(self):
"""Returns an AppStatus object that describes the current cluster state"""
return AppStatus(self)
def install(self):
"""Creates a Kustomization in the Kubernetes cluster that installs this application"""
# Generate the necessary passwords, etc. from a template
self.__generate_secrets()
# Create add-<app> kustomization
self.__create_kustomization()
def uninstall(self):
"""
Delete the app kustomization.
In our case, this triggers a deletion of the app's PVCs (so deletes all
data), as well as any other Kustomizations and HelmReleases related to
the app. It also triggers a deletion of the OAuth2Client object, but
does not delete the secrets generated by the `install` command. It also
does not remove the TLS secret generated by cert-manager.
"""
self.__delete_kustomization()
def delete(self):
"""
Fully deletes an application
This includes user roles, all kubernetes objects and also PVCs, so your
data will be *gone*
"""
# Delete all roles first
for role in self.roles:
db.session.delete(role)
db.session.commit()
db.session.delete(self)
return db.session.commit()
def __generate_secrets(self):
"""Generates passwords for app installation"""
# Create app variables secret
if self.variables_template_filepath:
k8s.create_variables_secret(self.slug, self.variables_template_filepath)
k8s.create_variables_secret(
self.slug,
os.path.join(
self.__get_templates_dir(),
"stackspin-oauth-variables.yaml.jinja"
)
)
def __create_kustomization(self):
"""Creates the `add-{app_slug}` kustomization in the Kubernetes cluster"""
kustomization_template_filepath = \
os.path.join(self.__get_templates_dir(),
"add-app-kustomization.yaml.jinja")
k8s.store_kustomization(kustomization_template_filepath, self.slug)
def __delete_kustomization(self):
"""Deletes kustomization for this app"""
k8s.delete_kustomization(f"add-{self.slug}")
@property
def variables_template_filepath(self):
"""Path to the variables template used to generate secrets the app needs"""
variables_template_filepath = os.path.join(self.__get_templates_dir(),
f"stackspin-{self.slug}-variables.yaml.jinja")
if os.path.exists(variables_template_filepath):
return variables_template_filepath
return None
@property
def namespace(self):
"""
Returns the Kubernetes namespace of this app
FIXME: This should probably become a database field.
"""
if self.slug in ['nextcloud', 'wordpress', 'wekan', 'zulip']:
return 'stackspin-apps'
return 'stackspin'
@property
def roles(self):
"""
All roles that are linked to this app
"""
return AppRole.query.filter_by(
app_id=self.id
).all()
@property
def kustomization(self):
"""Returns the kustomization object for this app"""
return k8s.get_kustomization(self.slug)
def to_dict(self):
"""
represent this object as a dict, compatible for JSON output
"""
return {"id": self.id,
"name": self.name,
"slug": self.slug,
"external": self.external,
"status": self.get_status().to_dict(),
"url": self.get_url()}
@property
def helmreleases(self):
"""Returns the helmreleases associated with the kustomization for this app"""
return k8s.get_all_helmreleases(self.namespace,
f"kustomize.toolkit.fluxcd.io/name={self.slug}")
@staticmethod
def __get_templates_dir():
"""Returns directory that contains the Jinja templates used to create app secrets."""
return os.path.join(os.path.dirname(os.path.realpath(__file__)), "templates")
class AppRole(db.Model): # pylint: disable=too-few-public-methods
"""
The AppRole object, stores the roles Users have on Apps
"""
user_id = db.Column(String(length=64), primary_key=True)
app_id = db.Column(Integer, ForeignKey("app.id"), primary_key=True)
role_id = db.Column(Integer, ForeignKey("role.id"))
role = relationship("Role")
def __repr__(self):
return (f"role_id: {self.role_id}, user_id: {self.user_id},"
f" app_id: {self.app_id}, role: {self.role}")
class AppStatus(): # pylint: disable=too-few-public-methods
"""
Represents the status of an app in the Kubernetes cluster.
This class can answer a few questions, like "is the app installed?", but
can also return raw status messages from Kustomizations and HelmReleases
This constructor sets three variables:
self.installed (bool): Whether the app should be installed
self.ready (bool): Whether the app is installed correctly
self.message (str): Information about the status
:param app: An app of which the kustomization and helmreleases
property will be used.
:type app: App
"""
def __init__(self, app):
if app.external:
self.installed = True
self.ready = True
self.message = "App is external"
return
kustomization = app.kustomization
if kustomization is not None and "status" in kustomization:
ks_ready, ks_message = AppStatus.check_condition(kustomization['status'])
self.installed = True
if ks_ready:
self.ready = ks_ready
self.message = "Installed"
return
else:
ks_ready = None
ks_message = "Kustomization does not exist"
self.installed = False
self.ready = False
self.message = "Not installed"
return
helmreleases = app.helmreleases
for helmrelease in helmreleases:
hr_status = helmrelease['status']
hr_ready, hr_message = AppStatus.check_condition(hr_status)
# For now, only show the message of the first HR that isn't ready
if not hr_ready:
self.ready = False
self.message = f"HelmRelease {helmrelease['metadata']['name']} status: {hr_message}"
return
# If we end up here, all HRs are ready, but the kustomization is not
self.ready = ks_ready
self.message = f"App Kustomization status: {ks_message}"
def __repr__(self):
return f"Installed: {self.installed}\tReady: {self.ready}\tMessage: {self.message}"
@staticmethod
def check_condition(status):
"""
Returns a tuple that has true/false for readiness and a message
Ready, in this case means that the condition's type == "Ready" and its
status == "True". If the condition type "Ready" does not occur, the
status is interpreted as not ready.
The message that is returned is the message that comes with the
condition with type "Ready"
:param status: Kubernetes resource's "status" object.
:type status: dict
"""
for condition in status["conditions"]:
if condition["type"] == "Ready":
return condition["status"] == "True", condition["message"]
return False, "Condition with type 'Ready' not found"
def to_dict(self):
"""Represents this app status as a dict"""
return {
"installed": self.installed,
"ready": self.ready,
"message": self.message,
}

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---
apiVersion: kustomize.toolkit.fluxcd.io/v1beta2
kind: Kustomization
metadata:
name: add-{{ app }}
namespace: flux-system
spec:
interval: 1h0m0s
path: ./flux2/cluster/optional/{{ app }}
prune: true
sourceRef:
kind: GitRepository
name: stackspin

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---
apiVersion: v1
kind: Secret
metadata:
name: stackspin-nextcloud-variables
data:
nextcloud_password: "{{ 32 | generate_password | b64encode }}"
nextcloud_mariadb_password: "{{ 32 | generate_password | b64encode }}"
nextcloud_mariadb_root_password: "{{ 32 | generate_password | b64encode }}"
nextcloud_redis_password: "{{ 32 | generate_password | b64encode }}"
onlyoffice_database_password: "{{ 32 | generate_password | b64encode }}"
onlyoffice_jwt_secret: "{{ 32 | generate_password | b64encode }}"
onlyoffice_rabbitmq_password: "{{ 32 | generate_password | b64encode }}"

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---
apiVersion: v1
kind: Secret
metadata:
name: stackspin-{{ app }}-oauth-variables
data:
client_id: "{{ app | b64encode }}"
client_secret: "{{ 32 | generate_password | b64encode }}"

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apiVersion: v1
kind: Secret
metadata:
name: stackspin-wekan-variables
data:
mongodb_password: "{{ 32 | generate_password | b64encode }}"
mongodb_root_password: "{{ 32 | generate_password | b64encode }}"

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---
apiVersion: v1
kind: Secret
metadata:
name: stackspin-wordpress-variables
data:
wordpress_admin_password: "{{ 32 | generate_password | b64encode }}"
wordpress_mariadb_password: "{{ 32 | generate_password | b64encode }}"
wordpress_mariadb_root_password: "{{ 32 | generate_password | b64encode }}"

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apiVersion: v1
kind: Secret
metadata:
name: stackspin-zulip-variables
data:
admin_password: "{{ 32 | generate_password | b64encode }}"
memcached_password: "{{ 32 | generate_password | b64encode }}"
rabbitmq_password: "{{ 32 | generate_password | b64encode }}"
rabbitmq_erlang_cookie: "{{ 32 | generate_password | b64encode }}"
redis_password: "{{ 32 | generate_password | b64encode }}"
postgresql_password: "{{ 32 | generate_password | b64encode }}"
zulip_password: "{{ 32 | generate_password | b64encode }}"

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from .auth import *

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from flask import jsonify, request
from flask_jwt_extended import create_access_token
from flask_cors import cross_origin
from datetime import timedelta
from areas import api_v1
from areas.apps import App, AppRole
from config import *
from helpers import HydraOauth, BadRequest, KratosApi
@api_v1.route("/login", methods=["POST"])
@cross_origin()
def login():
authorization_url = HydraOauth.authorize()
return jsonify({"authorizationUrl": authorization_url})
@api_v1.route("/hydra/callback")
@cross_origin()
def hydra_callback():
state = request.args.get("state")
code = request.args.get("code")
if state == None:
raise BadRequest("Missing state query param")
if code == None:
raise BadRequest("Missing code query param")
token = HydraOauth.get_token(state, code)
user_info = HydraOauth.get_user_info()
# Match Kratos identity with Hydra
identities = KratosApi.get("/identities")
identity = None
for i in identities.json():
if i["traits"]["email"] == user_info["email"]:
identity = i
access_token = create_access_token(
identity=token, expires_delta=timedelta(days=365), additional_claims={"user_id": identity["id"]}
)
apps = App.query.all()
app_roles = []
for app in apps:
tmp_app_role = AppRole.query.filter_by(
user_id=identity["id"], app_id=app.id
).first()
app_roles.append(
{
"name": app.slug,
"role_id": tmp_app_role.role_id if tmp_app_role else None,
}
)
return jsonify(
{
"accessToken": access_token,
"userInfo": {
"id": identity["id"],
"email": user_info["email"],
"name": user_info["name"],
"preferredUsername": user_info["preferred_username"],
"app_roles": app_roles,
},
}
)

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from .roles import *
from .models import *

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from sqlalchemy import Integer, String
from database import db
class Role(db.Model):
NO_ACCESS_ROLE_ID = 3
id = db.Column(Integer, primary_key=True)
name = db.Column(String(length=64))
def __repr__(self):
return f"Role {self.name}"

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from areas.apps.models import AppRole
from .models import Role
class RoleService:
@staticmethod
def get_roles():
roles = Role.query.all()
return [{"id": r.id, "name": r.name} for r in roles]
@staticmethod
def get_role_by_id(role_id):
return Role.query.filter_by(id=role_id).first()
@staticmethod
def is_user_admin(userId):
dashboard_role_id = AppRole.query.filter_by(user_id=userId, app_id=1).first().role_id
return dashboard_role_id == 1

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from flask import jsonify, request
from flask_jwt_extended import jwt_required
from flask_cors import cross_origin
from areas import api_v1
from .role_service import RoleService
@api_v1.route("/roles", methods=["GET"])
@jwt_required()
@cross_origin()
def get_roles():
roles = RoleService.get_roles()
return jsonify(roles)

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from .users import *
from .user_service import *

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import ory_kratos_client
from ory_kratos_client.model.submit_self_service_recovery_flow_body \
import SubmitSelfServiceRecoveryFlowBody
from ory_kratos_client.api import v0alpha2_api as kratos_api
from config import KRATOS_ADMIN_URL
from database import db
from areas.apps import App, AppRole, AppsService
from areas.roles import Role, RoleService
from helpers import KratosApi
from flask import current_app
from helpers.error_handler import KratosError
kratos_admin_api_configuration = \
ory_kratos_client.Configuration(host=KRATOS_ADMIN_URL, discard_unknown_keys=True)
KRATOS_ADMIN = \
kratos_api.V0alpha2Api(ory_kratos_client.ApiClient(kratos_admin_api_configuration))
class UserService:
@staticmethod
def get_users():
res = KratosApi.get("/admin/identities").json()
userList = []
for r in res:
userList.append(UserService.__insertAppRoleToUser(r["id"], r))
return userList
@staticmethod
def get_user(id):
res = KratosApi.get("/admin/identities/{}".format(id)).json()
return UserService.__insertAppRoleToUser(id, res)
@staticmethod
def post_user(data):
kratos_data = {
"schema_id": "default",
"traits": {
"name": data["name"],
"email": data["email"],
},
}
res = KratosApi.post("/admin/identities", kratos_data).json()
if data["app_roles"]:
app_roles = data["app_roles"]
for ar in app_roles:
app = App.query.filter_by(slug=ar["name"]).first()
app_role = AppRole(
user_id=res["id"],
role_id=ar["role_id"] if "role_id" in ar else Role.NO_ACCESS_ROLE_ID,
app_id=app.id,
)
db.session.add(app_role)
db.session.commit()
else:
all_apps = AppsService.get_all_apps()
for app in all_apps:
app_role = AppRole(
user_id=res["id"],
role_id=Role.NO_ACCESS_ROLE_ID,
app_id=app.id,
)
db.session.add(app_role)
db.session.commit()
UserService.__start_recovery_flow(data["email"])
return UserService.get_user(res["id"])
@staticmethod
def __start_recovery_flow(email):
"""
Start a Kratos recovery flow for the user's email address.
This sends out an email to the user that explains to them how they can
set their password. Make sure the user exists inside Kratos before you
use this function.
:param email: Email to send recovery link to
:type email: str
"""
api_response = KRATOS_ADMIN.initialize_self_service_recovery_flow_without_browser()
flow = api_response['id']
# Submit the recovery flow to send an email to the new user.
submit_self_service_recovery_flow_body = \
SubmitSelfServiceRecoveryFlowBody(method="link", email=email)
api_response = KRATOS_ADMIN.submit_self_service_recovery_flow(flow,
submit_self_service_recovery_flow_body=
submit_self_service_recovery_flow_body)
@staticmethod
def put_user(id, user_editing_id, data):
kratos_data = {
"schema_id": "default",
"traits": {"email": data["email"], "name": data["name"]},
}
KratosApi.put("/admin/identities/{}".format(id), kratos_data)
is_admin = RoleService.is_user_admin(user_editing_id)
if is_admin and data["app_roles"]:
app_roles = data["app_roles"]
for ar in app_roles:
app = App.query.filter_by(slug=ar["name"]).first()
app_role = AppRole.query.filter_by(
user_id=id, app_id=app.id).first()
if app_role:
app_role.role_id = ar["role_id"] if "role_id" in ar else None
db.session.commit()
else:
appRole = AppRole(
user_id=id,
role_id=ar["role_id"] if "role_id" in ar else None,
app_id=app.id,
)
db.session.add(appRole)
db.session.commit()
return UserService.get_user(id)
@staticmethod
def delete_user(id):
app_role = AppRole.query.filter_by(user_id=id).all()
for ar in app_role:
db.session.delete(ar)
db.session.commit()
@staticmethod
def post_multiple_users(data):
# check if data is array
# for every item in array call Kratos
created_users = []
existing_users = []
creation_failed_users = []
for user_data in data['users']:
user_email = user_data["email"]
if not user_email:
return
try:
UserService.post_user(user_data)
current_app.logger.info(f"Batch create user: {user_email}")
created_users.append(user_email)
except KratosError as err:
status_code = err.args[1]
if status_code == 409:
existing_users.append(user_email)
elif status_code == 400:
creation_failed_users.append(user_email)
current_app.logger.error(
f"Exception calling Kratos: {err} on creating user: {user_email} {status_code}")
except Exception as error:
current_app.logger.error(
f"Exception: {error} on creating user: {user_email}")
creation_failed_users.append(user_email)
success_response = {}
existing_response = {}
failed_response = {}
if created_users:
success_response = {"users": created_users,
"message": f"{len(created_users)} users created"}
if existing_users:
existing_response = {
"users": existing_users, "message": f"{len(existing_users)} users already exist: {', '.join(existing_users)}"}
if creation_failed_users:
failed_response = {"users": creation_failed_users,
"message": f"{len(creation_failed_users)} users failed to create: {', '.join(creation_failed_users)}"}
return {"success": success_response, "existing": existing_response, "failed": failed_response}
@staticmethod
def __insertAppRoleToUser(userId, userRes):
apps = App.query.all()
app_roles = []
for app in apps:
tmp_app_role = AppRole.query.filter_by(
user_id=userId, app_id=app.id
).first()
app_roles.append(
{
"name": app.slug,
"role_id": tmp_app_role.role_id if tmp_app_role else None,
}
)
userRes["traits"]["app_roles"] = app_roles
return userRes

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from flask import jsonify, request
from flask_jwt_extended import get_jwt, jwt_required
from flask_cors import cross_origin
from flask_expects_json import expects_json
from areas import api_v1
from helpers import KratosApi
from helpers.auth_guard import admin_required
from .validation import schema, schema_multiple
from .user_service import UserService
@api_v1.route("/users", methods=["GET"])
@jwt_required()
@cross_origin()
@admin_required()
def get_users():
res = UserService.get_users()
return jsonify(res)
@api_v1.route("/users/<string:id>", methods=["GET"])
@jwt_required()
@cross_origin()
@admin_required()
def get_user(id):
res = UserService.get_user(id)
return jsonify(res)
@api_v1.route("/users", methods=["POST"])
@jwt_required()
@cross_origin()
@expects_json(schema)
@admin_required()
def post_user():
data = request.get_json()
res = UserService.post_user(data)
return jsonify(res)
@api_v1.route("/users/<string:id>", methods=["PUT"])
@jwt_required()
@cross_origin()
@expects_json(schema)
@admin_required()
def put_user(id):
data = request.get_json()
user_id = __get_user_id_from_jwt()
res = UserService.put_user(id, user_id, data)
return jsonify(res)
@api_v1.route("/users/<string:id>", methods=["DELETE"])
@jwt_required()
@cross_origin()
@admin_required()
def delete_user(id):
res = KratosApi.delete("/identities/{}".format(id))
if res.status_code == 204:
UserService.delete_user(id)
return jsonify(), res.status_code
return jsonify(res.json()), res.status_code
@api_v1.route("/users-batch", methods=["POST"])
@jwt_required()
@cross_origin()
@expects_json(schema_multiple)
@admin_required()
def post_multiple_users():
"""Expects an array of user JSON schema in request body."""
data = request.get_json()
res = UserService.post_multiple_users(data)
return jsonify(res)
@api_v1.route("/me", methods=["GET"])
@jwt_required()
@cross_origin()
def get_personal_info():
user_id = __get_user_id_from_jwt()
res = UserService.get_user(user_id)
return jsonify(res)
@api_v1.route("/me", methods=["PUT"])
@jwt_required()
@cross_origin()
@expects_json(schema)
def update_personal_info():
data = request.get_json()
user_id = __get_user_id_from_jwt()
res = UserService.put_user(user_id, user_id, data)
return jsonify(res)
def __get_user_id_from_jwt():
claims = get_jwt()
return claims["user_id"]

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import re
schema = {
"type": "object",
"properties": {
"email": {
"type": "string",
"description": "Email of the user",
"pattern": r"(?:[a-z0-9!#$%&'*+/=?^_`{|}~-]+(?:\.[a-z0-9!#$%&'*+/=?^_`{|}~-]+)*|\"(?:[\x01-\x08\x0b\x0c\x0e-\x1f\x21\x23-\x5b\x5d-\x7f]|\\[\x01-\x09\x0b\x0c\x0e-\x7f])*\")@(?:(?:[a-z0-9](?:[a-z0-9-]*[a-z0-9])?\.)+[a-z0-9](?:[a-z0-9-]*[a-z0-9])?|\[(?:(?:(2(5[0-5]|[0-4][0-9])|1[0-9][0-9]|[1-9]?[0-9]))\.){3}(?:(2(5[0-5]|[0-4][0-9])|1[0-9][0-9]|[1-9]?[0-9])|[a-z0-9-]*[a-z0-9]:(?:[\x01-\x08\x0b\x0c\x0e-\x1f\x21-\x5a\x53-\x7f]|\\[\x01-\x09\x0b\x0c\x0e-\x7f])+)\])",
"minLength": 1,
},
"app_roles": {
"type": "array",
"items": {
"type": "object",
"properties": {
"name": {
"type": "string",
"description": "Name of the app",
"minLenght": 1,
},
"role_id": {
"type": ["integer", "null"],
"description": "Role of the user",
"minimum": 1,
},
},
"required": ["name", "role_id"],
},
},
},
"required": ["email", "app_roles"],
}
schema_multiple = {
"users": {
"type": "array",
"items": {
"$ref": schema
}
}
}

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from flask import Blueprint
cli = Blueprint("cli", __name__)

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from .cli import *

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"""Flask application which provides the interface of a login panel. The
application interacts with different backend, like the Kratos backend for users,
Hydra for OIDC sessions and MariaDB for application and role specifications.
The application provides also several command line options to interact with
the user entries in the database(s)"""
import click
import hydra_client
import ory_kratos_client
from flask import current_app
from flask.cli import AppGroup
from ory_kratos_client.api import v0alpha2_api as kratos_api
from sqlalchemy import func
from config import HYDRA_ADMIN_URL, KRATOS_ADMIN_URL, KRATOS_PUBLIC_URL
from helpers import KratosUser
from cliapp import cli
from areas.roles import Role
from areas.apps import AppRole, App
from database import db
# APIs
# Create HYDRA & KRATOS API interfaces
HYDRA = hydra_client.HydraAdmin(HYDRA_ADMIN_URL)
# Kratos has an admin and public end-point. We create an API for them
# both. The kratos implementation has bugs, which forces us to set
# the discard_unknown_keys to True.
kratos_admin_api_configuration = \
ory_kratos_client.Configuration(host=KRATOS_ADMIN_URL, discard_unknown_keys=True)
KRATOS_ADMIN = \
kratos_api.V0alpha2Api(ory_kratos_client.ApiClient(kratos_admin_api_configuration))
kratos_public_api_configuration = \
ory_kratos_client.Configuration(host=KRATOS_PUBLIC_URL, discard_unknown_keys=True)
KRATOS_PUBLIC = \
kratos_api.V0alpha2Api(ory_kratos_client.ApiClient(kratos_public_api_configuration))
##############################################################################
# CLI INTERFACE #
##############################################################################
# Define Flask CLI command groups and commands
user_cli = AppGroup("user")
app_cli = AppGroup("app")
## CLI APP COMMANDS
@app_cli.command("create")
@click.argument("slug")
@click.argument("name")
@click.argument("external-url", required=False)
def create_app(slug, name, external_url = None):
"""Adds an app into the database
:param slug: str short name of the app
:param name: str name of the application
:param extenal-url: if set, it marks this as an external app and
configures the url
"""
current_app.logger.info(f"Creating app definition: {name} ({slug}")
obj = App()
obj.name = name
obj.slug = slug
app_obj = App.query.filter_by(slug=slug).first()
if app_obj:
current_app.logger.info(f"App definition: {name} ({slug}) already exists in database")
return
if (external_url):
obj.external = True
obj.url = external_url
db.session.add(obj)
db.session.commit()
current_app.logger.info(f"App definition: {name} ({slug}) created")
@app_cli.command("list")
def list_app():
"""List all apps found in the database"""
current_app.logger.info("Listing configured apps")
apps = App.query.all()
for obj in apps:
print(f"App name: {obj.name}\tSlug: {obj.slug},\tURL: {obj.get_url()}\tStatus: {obj.get_status()}")
@app_cli.command(
"delete",
)
@click.argument("slug")
def delete_app(slug):
"""Removes app from database
:param slug: str Slug of app to remove
"""
current_app.logger.info(f"Trying to delete app: {slug}")
app_obj = App.query.filter_by(slug=slug).first()
if not app_obj:
current_app.logger.info("Not found")
return
app_status = app_obj.get_status()
if app_status.installed and not app_obj.external:
current_app.logger.info("Can not delete installed application, run"
" 'uninstall' first")
return
app_obj.delete()
current_app.logger.info("Success.")
@app_cli.command(
"uninstall",
)
@click.argument("slug")
def uninstall_app(slug):
"""Uninstalls the app from the cluster
:param slug: str Slug of app to remove
"""
current_app.logger.info(f"Trying to uninstall app: {slug}")
app_obj = App.query.filter_by(slug=slug).first()
if not app_obj:
current_app.logger.info("Not found")
return
app_obj.uninstall()
current_app.logger.info("Success.")
return
@app_cli.command("status")
@click.argument("slug")
def status_app(slug):
"""Gets the current app status from the Kubernetes cluster
:param slug: str Slug of app to remove
"""
current_app.logger.info(f"Getting status for app: {slug}")
app = App.query.filter_by(slug=slug).first()
if not app:
current_app.logger.error(f"App {slug} does not exist")
return
current_app.logger.info(app.get_status())
@app_cli.command("install")
@click.argument("slug")
def install_app(slug):
"""Installs app into Kubernetes cluster
:param slug: str Slug of app to install
"""
current_app.logger.info(f"Installing app: {slug}")
app = App.query.filter_by(slug=slug).first()
if not app:
current_app.logger.error(f"App {slug} does not exist")
return
if app.external:
current_app.logger.info(
f"App {slug} is an external app and can not be provisioned automatically")
return
current_status = app.get_status()
if not current_status.installed:
app.install()
current_app.logger.info(
f"App {slug} installing... use `status` to see status")
else:
current_app.logger.error(f"App {slug} is already installed")
@app_cli.command("roles")
@click.argument("slug")
def roles_app(slug):
"""Gets a list of roles for this app
:param slug: str Slug of app queried
"""
current_app.logger.info(f"Getting roles for app: {slug}")
app = App.query.filter_by(slug=slug).first()
if not app:
current_app.logger.error(f"App {slug} does not exist")
return
current_app.logger.info("Roles: ")
for role in app.roles:
current_app.logger.info(role)
cli.cli.add_command(app_cli)
## CLI USER COMMANDS
@user_cli.command("setrole")
@click.argument("email")
@click.argument("app_slug")
@click.argument("role")
def setrole(email, app_slug, role):
"""Set role for a user
:param email: Email address of user to assign role
:param app_slug: Slug name of the app, for example 'nextcloud'
:param role: Role to assign. currently only 'admin', 'user'
"""
current_app.logger.info(f"Assigning role {role} to {email} for app {app_slug}")
# Find user
user = KratosUser.find_by_email(KRATOS_ADMIN, email)
if role not in ("admin", "user"):
print("At this point only the roles 'admin' and 'user' are accepted")
return
if not user:
print("User not found. Abort")
return
app_obj = db.session.query(App).filter(App.slug == app_slug).first()
if not app_obj:
print("App not found. Abort.")
return
role_obj = (
db.session.query(AppRole)
.filter(AppRole.app_id == app_obj.id)
.filter(AppRole.user_id == user.uuid)
.first()
)
if role_obj:
db.session.delete(role_obj)
role = Role.query.filter(func.lower(Role.name) == func.lower(role)).first()
obj = AppRole()
obj.user_id = user.uuid
obj.app_id = app_obj.id
obj.role_id = role.id if role else None
db.session.add(obj)
db.session.commit()
@user_cli.command("show")
@click.argument("email")
def show_user(email):
"""Show user details. Output a table with the user and details about the
internal state/values of the user object
:param email: Email address of the user to show
"""
user = KratosUser.find_by_email(KRATOS_ADMIN, email)
if user is not None:
print(user)
print("")
print(f"UUID: {user.uuid}")
print(f"Username: {user.username}")
print(f"Updated: {user.updated_at}")
print(f"Created: {user.created_at}")
print(f"State: {user.state}")
print(f"Roles:")
results = db.session.query(AppRole, Role).join(App, Role)\
.add_entity(App).add_entity(Role)\
.filter(AppRole.user_id == user.uuid)
for entry in results:
app = entry[-2]
role = entry[-1]
print(f" {role.name: >9} on {app.name}")
else:
print(f"User with email address '{email}' was not found")
@user_cli.command("update")
@click.argument("email")
@click.argument("field")
@click.argument("value")
def update_user(email, field, value):
"""Update an user object. It can modify email and name currently
:param email: Email address of user to update
:param field: Field to update, supported [name|email]
:param value: The value to set the field with
"""
current_app.logger.info(f"Looking for user with email: {email}")
user = KratosUser.find_by_email(KRATOS_ADMIN, email)
if not user:
current_app.logger.error(f"User with email {email} not found.")
return
if field == "name":
user.name = value
elif field == "email":
user.email = value
else:
current_app.logger.error(f"Field not found: {field}")
user.save()
@user_cli.command("delete")
@click.argument("email")
def delete_user(email):
"""Delete an user from the database
:param email: Email address of user to delete
"""
current_app.logger.info(f"Looking for user with email: {email}")
user = KratosUser.find_by_email(KRATOS_ADMIN, email)
if not user:
current_app.logger.error(f"User with email {email} not found.")
return
user.delete()
@user_cli.command("create")
@click.argument("email")
def create_user(email):
"""Create a user in the kratos database. The argument must be an unique
email address
:param email: string Email address of user to add
"""
current_app.logger.info(f"Creating user with email: ({email})")
# Create a user
user = KratosUser.find_by_email(KRATOS_ADMIN, email)
if user:
current_app.logger.info("User already exists. Not recreating")
return
user = KratosUser(KRATOS_ADMIN)
user.email = email
user.save()
@user_cli.command("setpassword")
@click.argument("email")
@click.argument("password")
def setpassword_user(email, password):
"""Set a password for an account
:param email: email address of account to set a password for
:param password: password to be set
:return: true on success, false if not set (too weak)
:rtype: boolean
:raise: exception if unexepted error happens
"""
current_app.logger.info(f"Setting password for: ({email})")
# Kratos does not provide an interface to set a password directly. However
# we still want to be able to set a password. So we have to hack our way
# a bit around this. We do this by creating a recovery link though the
# admin interface (which is not e-mailed) and then follow the recovery
# flow in the public facing pages of kratos
try:
# Get the ID of the user
kratos_user = KratosUser.find_by_email(KRATOS_ADMIN, email)
if kratos_user is None:
current_app.logger.error(f"User with email '{email}' not found")
return False
# Get a recovery URL
url = kratos_user.get_recovery_link()
# Execute UI sequence to set password, given we have a recovery URL
result = kratos_user.ui_set_password(KRATOS_PUBLIC_URL, url, password)
except Exception as error: # pylint: disable=broad-except
current_app.logger.error(f"Error while setting password: {error}")
return False
if result:
current_app.logger.info("Success setting password")
else:
current_app.logger.error("Failed to set password. Password too weak?")
return result
@user_cli.command("list")
def list_user():
"""Show a list of users in the database"""
current_app.logger.info("Listing users")
users = KratosUser.find_all(KRATOS_ADMIN)
for obj in users:
print(obj)
@user_cli.command("recover")
@click.argument("email")
def recover_user(email):
"""Get recovery link for a user, to manual update the user/use
:param email: Email address of the user
"""
current_app.logger.info(f"Trying to send recover email for user: {email}")
try:
# Get the ID of the user
kratos_user = KratosUser.find_by_email(KRATOS_ADMIN, email)
# Get a recovery URL
url = kratos_user.get_recovery_link()
print(url)
except Exception as error: # pylint: disable=broad-except
current_app.logger.error(f"Error while getting reset link: {error}")
cli.cli.add_command(user_cli)

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backend/config.py Normal file
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import os
SECRET_KEY = os.environ.get("SECRET_KEY")
HYDRA_CLIENT_ID = os.environ.get("HYDRA_CLIENT_ID")
HYDRA_CLIENT_SECRET = os.environ.get("HYDRA_CLIENT_SECRET")
HYDRA_AUTHORIZATION_BASE_URL = os.environ.get("HYDRA_AUTHORIZATION_BASE_URL")
TOKEN_URL = os.environ.get("TOKEN_URL")
LOGIN_PANEL_URL = os.environ.get("LOGIN_PANEL_URL")
HYDRA_PUBLIC_URL = os.environ.get("HYDRA_PUBLIC_URL")
HYDRA_ADMIN_URL = os.environ.get("HYDRA_ADMIN_URL")
KRATOS_ADMIN_URL = os.environ.get("KRATOS_ADMIN_URL")
KRATOS_PUBLIC_URL = str(os.environ.get("KRATOS_PUBLIC_URL")) + "/"
SQLALCHEMY_DATABASE_URI = os.environ.get("DATABASE_URL")
SQLALCHEMY_TRACK_MODIFICATIONS = False
# Set this to "true" to load the config from a Kubernetes serviceaccount
# running in a Kubernetes pod. Set it to "false" to load the config from the
# `KUBECONFIG` environment variable.
LOAD_INCLUSTER_CONFIG = os.environ.get("LOAD_INCLUSTER_CONFIG").lower() == "true"

2
backend/database.py Normal file
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from flask_sqlalchemy import SQLAlchemy
db = SQLAlchemy()

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version: '3'
services:
stackspin_proxy:
image: nginx:1.23.1
ports:
- "8081:8081"
volumes:
- ./proxy/default.conf:/etc/nginx/conf.d/default.conf
depends_on:
- kube_port_kratos_public
- flask_app
flask_app:
build: .
environment:
- FLASK_APP=app.py
- FLASK_ENV=development
- HYDRA_CLIENT_ID=dashboard-local
# Domain-specific URL settings
- HYDRA_AUTHORIZATION_BASE_URL=https://sso.$DOMAIN/oauth2/auth
- TOKEN_URL=https://sso.$DOMAIN/oauth2/token
- HYDRA_PUBLIC_URL=https://sso.$DOMAIN
# Local path overrides
- KRATOS_PUBLIC_URL=http://stackspin_proxy:8081/kratos
- KRATOS_ADMIN_URL=http://kube_port_kratos_admin:8000
- HYDRA_ADMIN_URL=http://kube_port_hydra_admin:4445
- LOGIN_PANEL_URL=http://stackspin_proxy:8081/web/
- DATABASE_URL=mysql+pymysql://stackspin:$DATABASE_PASSWORD@kube_port_mysql/stackspin
# ENV variables that are deployment-specific
- SECRET_KEY=$FLASK_SECRET_KEY
- HYDRA_CLIENT_SECRET=$HYDRA_CLIENT_SECRET
- KUBECONFIG=/.kube/config
# Disable loading config from the service account
- LOAD_INCLUSTER_CONFIG=false
ports:
- "5000:5000"
user: "${KUBECTL_UID}:${KUBECTL_GID}"
volumes:
- .:/app
- "$KUBECONFIG:/.kube/config"
depends_on:
- kube_port_mysql
entrypoint: ["bash", "-c", "flask run --host $$(hostname -i)"]
kube_port_kratos_admin:
image: bitnami/kubectl:1.25.2
user: "${KUBECTL_UID}:${KUBECTL_GID}"
expose:
- 8000
volumes:
- "$KUBECONFIG:/.kube/config"
entrypoint: ["bash", "-c", "kubectl -n stackspin port-forward --address $$(hostname -i) service/kratos-admin 8000:80"]
kube_port_hydra_admin:
image: bitnami/kubectl:1.25.2
user: "${KUBECTL_UID}:${KUBECTL_GID}"
expose:
- 4445
volumes:
- "$KUBECONFIG:/.kube/config"
entrypoint: ["bash", "-c", "kubectl -n stackspin port-forward --address $$(hostname -i) service/hydra-admin 4445:4445"]
kube_port_kratos_public:
image: bitnami/kubectl:1.25.2
user: "${KUBECTL_UID}:${KUBECTL_GID}"
ports:
- "8080:8080"
expose:
- 8080
volumes:
- "$KUBECONFIG:/.kube/config"
entrypoint: ["bash", "-c", "kubectl -n stackspin port-forward --address $$(hostname -i) service/kratos-public 8080:80"]
kube_port_mysql:
image: bitnami/kubectl:1.25.2
user: "${KUBECTL_UID}:${KUBECTL_GID}"
expose:
- 3306
volumes:
- "$KUBECONFIG:/.kube/config"
entrypoint: ["bash", "-c", "kubectl -n stackspin port-forward --address $$(hostname -i) service/single-sign-on-database-mariadb 3306:3306"]

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from .kratos_api import *
from .error_handler import *
from .hydra_oauth import *
from .kratos_user import *

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from functools import wraps
from areas.roles.role_service import RoleService
from flask_jwt_extended import get_jwt, verify_jwt_in_request
from helpers import Unauthorized
def admin_required():
def wrapper(fn):
@wraps(fn)
def decorator(*args, **kwargs):
verify_jwt_in_request()
claims = get_jwt()
user_id = claims["user_id"]
is_admin = RoleService.is_user_admin(user_id)
if is_admin:
return fn(*args, **kwargs)
else:
raise Unauthorized("You need to have admin permissions.")
return decorator
return wrapper

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"""Generic classes used by different parts of the application"""
import urllib.request
# Instead of processing the redirect, we return, so the application
# can handle the redirect itself. This is needed to extract cookies
# etc.
class RedirectFilter(urllib.request.HTTPRedirectHandler):
"""Overrides the standard redirect handler so it does not automatically
redirect. This allows for inspecting the return values before redirecting or
override the redirect action"""
# pylint: disable=too-many-arguments
# This amount of arguments is expected by the HTTPRedirectHandler
def redirect_request(self, req, fp, code, msg, headers, newurl):
return None

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from flask import jsonify
from jsonschema import ValidationError
class KratosError(Exception):
pass
class HydraError(Exception):
pass
class BadRequest(Exception):
pass
class Unauthorized(Exception):
pass
def bad_request_error(e):
message = e.args[0] if e.args else "Bad request to the server."
return jsonify({"errorMessage": message}), 400
def validation_error(e):
original_error = e.description
return (
jsonify({"errorMessage": "{} is not valid.".format(original_error.path[0])}),
400,
)
def kratos_error(e):
message = "[KratosError] " + e.args[0] if e.args else "Failed to contact Kratos."
status_code = e.args[1] if e.args else 500
return jsonify({"errorMessage": message}), status_code
def hydra_error(e):
message = "[HydraError] " + e.args[0] if e.args else "Failed to contact Hydra."
status_code = e.args[1] if e.args else 500
return jsonify({"errorMessage": message}), status_code
def global_error(e):
message = str(e)
return jsonify({"errorMessage": message}), 500
def unauthorized_error(e):
message = str(e)
return jsonify({"errorMessage": message}), 403

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"""Custom exception handler to raise consistent exceptions, as different backend
raise different exceptions"""
class BackendError(Exception):
"""The backend error is raised when interacting with
the backend fails or gives an unexpected result. The
error contains a oneliner description of the problem"""

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from flask import request, session
from requests_oauthlib import OAuth2Session
from config import *
from helpers import HydraError
class HydraOauth:
@staticmethod
def authorize():
try:
hydra = OAuth2Session(HYDRA_CLIENT_ID)
authorization_url, state = hydra.authorization_url(
HYDRA_AUTHORIZATION_BASE_URL
)
return authorization_url
except Exception as err:
raise HydraError(str(err), 500)
@staticmethod
def get_token(state, code):
try:
hydra = OAuth2Session(
client_id=HYDRA_CLIENT_ID,
state=state,
)
token = hydra.fetch_token(
token_url=TOKEN_URL,
code=code,
client_secret=HYDRA_CLIENT_SECRET,
include_client_id=True,
)
session["hydra_token"] = token
return token
except Exception as err:
raise HydraError(str(err), 500)
@staticmethod
def get_user_info():
try:
hydra = OAuth2Session(
client_id=HYDRA_CLIENT_ID, token=session["hydra_token"]
)
user_info = hydra.get("{}/userinfo".format(HYDRA_PUBLIC_URL))
return user_info.json()
except Exception as err:
raise HydraError(str(err), 500)

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from logging import error
import requests
from config import *
from .error_handler import KratosError
class KratosApi:
@staticmethod
def __handleError(res):
if res.status_code >= 400:
message = res.json()["error"]["message"]
raise KratosError(message, res.status_code)
@staticmethod
def get(url):
try:
res = requests.get("{}{}".format(KRATOS_ADMIN_URL, url))
KratosApi.__handleError(res)
return res
except KratosError as err:
raise err
except:
raise KratosError()
@staticmethod
def post(url, data):
try:
res = requests.post("{}{}".format(KRATOS_ADMIN_URL, url), json=data)
KratosApi.__handleError(res)
return res
except KratosError as err:
raise err
except:
raise KratosError()
@staticmethod
def put(url, data):
try:
res = requests.put("{}{}".format(KRATOS_ADMIN_URL, url), json=data)
KratosApi.__handleError(res)
return res
except KratosError as err:
raise err
except:
raise KratosError()
@staticmethod
def delete(url):
try:
res = requests.delete("{}{}".format(KRATOS_ADMIN_URL, url))
KratosApi.__handleError(res)
return res
except KratosError as err:
raise err
except:
raise KratosError()

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"""
Implement the Kratos model to interact with kratos users
"""
import json
import re
import urllib.parse
import urllib.request
from typing import Dict
from urllib.request import Request
# Some imports commented out to satisfy pylint. They will be used once more
# functions are migrated to this model
from ory_kratos_client.model.admin_create_identity_body import AdminCreateIdentityBody
from ory_kratos_client.model.admin_create_self_service_recovery_link_body \
import AdminCreateSelfServiceRecoveryLinkBody
from ory_kratos_client.model.admin_update_identity_body import AdminUpdateIdentityBody
from ory_kratos_client.rest import ApiException as KratosApiException
from .classes import RedirectFilter
from .exceptions import BackendError
# pylint: disable=too-many-instance-attributes
class KratosUser():
"""
The User object, interact with the User. It both calls to Kratos as to
the database for storing and retrieving data.
"""
api = None
__uuid = None
email = None
name = None
username = None
state = None
created_at = None
updated_at = None
def __init__(self, api, uuid = None):
self.api = api
self.state = 'active'
if uuid:
try:
obj = api.admin_get_identity(uuid)
if obj:
self.__uuid = uuid
try:
self.name = obj.traits['name']
except KeyError:
self.name = ""
try:
self.username = obj.traits['username']
except KeyError:
self.username = ""
self.email = obj.traits['email']
self.state = obj.state
self.created_at = obj.created_at
self.updated_at = obj.updated_at
except KratosApiException as error:
raise BackendError(f"Unable to get entry, kratos replied with: {error}") from error
def __repr__(self):
return f"\"{self.name}\" <{self.email}>"
@property
def uuid(self):
"""Gets the protected UUID propery"""
return self.__uuid
def save(self):
"""Saves this object into the kratos backend database. If the object
is new, it will create, otherwise update an entry.
:raise: BackendError is an error with Kratos happened.
"""
# Traits are the "profile" values we will set, kratos will complain on
# empty values, so we check if "name" is set and only add it if so.
traits = {'email':self.email}
if self.name:
traits['name'] = self.name
# If we have a UUID, we are updating
if self.__uuid:
body = AdminUpdateIdentityBody(
schema_id="default",
state=self.state,
traits=traits,
)
try:
api_response = self.api.admin_update_identity(self.__uuid,
admin_update_identity_body=body)
except KratosApiException as error:
raise BackendError(f"Unable to save entry, kratos replied with:{error}") from error
else:
body = AdminCreateIdentityBody(
schema_id="default",
traits=traits,
)
try:
# Create an Identity
api_response = self.api.admin_create_identity(
admin_create_identity_body=body)
if api_response.id:
self.__uuid = api_response.id
except KratosApiException as error:
raise BackendError(f"Unable to save entry, kratos replied with:{error}") from error
def delete(self):
"""Deletes the object from kratos
:raise: BackendError if Krator API call fails
"""
if self.__uuid:
try:
self.api.admin_delete_identity(self.__uuid)
return True
except KratosApiException as error:
raise BackendError(
f"Unable to delete entry, kratos replied with: {error}"
) from error
return False
@staticmethod
def find_by_email(api, email):
"""Queries Kratos to find kratos ID for this given identifier
:param api: Kratos ADMIN API Object
:param email: Identifier to look for
:return: Return none or string with ID
"""
kratos_id = None
# Get out user ID by iterating over all available IDs
data = api.admin_list_identities()
for kratos_obj in data.value:
# Unique identifier we use
if kratos_obj.traits['email'] == email:
kratos_id = str(kratos_obj.id)
return KratosUser(api, kratos_id)
return None
@staticmethod
def find_all(api):
"""Queries Kratos to find all kratos users and return them
as a list of KratosUser objects
:return: Return list
"""
kratos_id = None
return_list = []
# Get out user ID by iterating over all available IDs
data = api.admin_list_identities()
for kratos_obj in data.value:
kratos_id = str(kratos_obj.id)
return_list.append(KratosUser(api, kratos_id))
return return_list
@staticmethod
def extract_cookies(cookies):
"""Extract session and CSRF cookie from a list of cookies.
Iterate over a list of cookies and extract the session
cookies required for Kratos User Panel UI
:param cookies: str[], list of cookies
:return: Cookies concatenated as string
:rtype: str
"""
# Find kratos session cookie & csrf
cookie_csrf = None
cookie_session = None
for cookie in cookies:
search = re.match(r'ory_kratos_session=([^;]*);.*$', cookie)
if search:
cookie_session = "ory_kratos_session=" + search.group(1)
search = re.match(r'(csrf_token[^;]*);.*$', cookie)
if search:
cookie_csrf = search.group(1)
if not cookie_csrf or not cookie_session:
raise BackendError("Flow started, but expected cookies not found")
# Combined the relevant cookies
cookie = cookie_csrf + "; " + cookie_session
return cookie
def get_recovery_link(self):
"""Call the kratos API to create a recovery URL for a kratos ID
:param: api Kratos ADMIN API Object
:param: kratos_id UUID of kratos object
:return: Return none or string with recovery URL
"""
try:
# Create body request to get recovery link with admin API
body = AdminCreateSelfServiceRecoveryLinkBody(
expires_in="15m",
identity_id=self.__uuid
)
# Get recovery link from admin API
call = self.api.admin_create_self_service_recovery_link(
admin_create_self_service_recovery_link_body=body)
url = call.recovery_link
except KratosApiException:
return None
return url
def ui_set_password(self, api_url, recovery_url, password):
"""Follow a Kratos UI sequence to set password
Kratos does not provide an interface to set a password directly. However
we still can set a password by following the UI sequence. To so so we
to follow the steps which are normally done in a browser once someone
clicks the recovery link.
:param: api_url URL to public endpoint of API
:param: recovery_url Recovery URL as generated by Kratos
:param: password Password
:raise: Exception with error message as first argument
:return: boolean True on success, False on failure (usualy password
to simple)
"""
# Step 1: Open the recovery link and extract the cookies, as we need them
# for the next steps
try:
# We override the default Redirect handler with our custom handler to
# be able to catch the cookies.
opener = urllib.request.build_opener(RedirectFilter)
# We rewrite the URL we got. It can be we run this from an enviroment
# with different KRATUS_PUBLIC_URL API endpoint then kratos provide
# itself. For example in the case running as a job to create an admin
# account before TLS is setup/working
search = re.match(r'.*(self-service.recovery.flow.*)$', recovery_url)
if search:
recovery_url = api_url + search.group(1)
else:
raise BackendError('Did not find recovery flow')
opener.open(recovery_url)
# If we do not have a 2xx status, urllib throws an error, as we "stopped"
# at our redirect, we expect a 3xx status
except urllib.error.HTTPError as http_error:
# Kratos pre-0.8 returned 302, kratos 0.8 returns 303
if http_error.status in (302, 303):
# Get the cookie and redirect location from the response
# headers
cookies = http_error.headers.get_all('Set-Cookie')
url = http_error.headers.get('Location')
else:
raise BackendError('Unable to fetch recovery link') from http_error
else:
raise BackendError('Recovery link returned unexpected data')
# Step 2: Extract cookies and data for next step. We expect to have an
# authorized session now. We need the cookies for followup calls
# to make changes to the account (set password)
# Get flow id
search = re.match(r'.*\?flow=(.*)', url)
if search:
flow = search.group(1)
else:
raise BackendError('No Flow ID found for recovery sequence')
# Extract cookies with helper function
cookie = self.extract_cookies(cookies)
# Step 3: Get the "UI", kratos expect us to call the API to get the UI
# elements which contains the CSRF token, which is needed when
# posting the password data
try:
url = api_url + "/self-service/settings/flows?id=" + flow
req = Request(url, headers={'Cookie':cookie})
opener = urllib.request.build_opener()
# Execute the request, read the data, decode the JSON, get the
# right CSRF token out of the decoded JSON
obj = json.loads(opener.open(req).read())
csrf_token = obj['ui']['nodes'][0]['attributes']['value']
except Exception as error:
raise BackendError("Unable to get password reset UI") from error
# Step 4: Post out password
url = api_url + "self-service/settings?flow=" + flow
# Create POST data as form data
data = {
'method': 'password',
'password': password,
'csrf_token': csrf_token
}
data = urllib.parse.urlencode(data)
data = data.encode('ascii')
# POST the new password
try:
req = Request(url, data = data, headers={'Cookie':cookie}, method="POST")
opener = urllib.request.build_opener(RedirectFilter)
opener.open(req)
# If we do not have a 2xx status, urllib throws an error, as we "stopped"
# at our redirect, we expect a 3xx status
except urllib.error.HTTPError as http_error:
# Kratos pre-0.8 returned 302, kratos 0.8 returns 303
if http_error.status in (302, 303):
# Kratos only sends HTTP codes after our submission. We should
# now call the `settings` endpoint to see if our call
# succeeded, or else, if there are any messages about why it
# failed
try:
url = api_url + "/self-service/settings/flows?id=" + flow
req = Request(url, headers={'Cookie':cookie, "Accept": "application/json"})
opener = urllib.request.build_opener()
# Execute the request, read the data, decode the JSON
obj = json.loads(opener.open(req).read())
# If the 'state' has changed to 'success', the password was
# set successfully
if obj['state'] == 'success':
return True
# Failure: we check if there are error messages
for node in obj['ui']['nodes']:
if node['messages']:
print(f"Problems with field '{node['meta']['label']['text']}':")
for message in node['messages']:
print(message['text'])
raise BackendError("Password not set") from http_error
except Exception as error:
raise BackendError("Unable to get password reset UI") from error
return False
raise BackendError("Unable to set password by submitting form")
# Pylint complains about app not used. That is correct, but we will use that
# in the future. Ignore this error
# pylint: disable=unused-argument
def get_claims(self, app, roles, mapping=None) -> Dict[str, Dict[str, str]]:
"""Create openID Connect token
Use the userdata stored in the user object to create an OpenID Connect token.
The token returned by this function can be passed to Hydra,
which will store it and serve it to OpenID Connect Clients to retrieve user information.
If you need to relabel a field pass an array of tuples to mapping.
Example: getClaims('nextcloud', mapping=[("name", "username"),("roles", "groups")])
Attributes:
appname - Name or ID of app to connect to
roles - List of roles to add to the `stackspin_roles` claim
mapping - Mapping of the fields
Returns:
OpenID Connect token of type dict
"""
# Name should be set, however, we do not enforce this yet.
# if somebody does not set it's name, we use the email address
# as name
if self.name:
name = self.name
else:
name = self.email
if self.username:
username = self.username
else:
username = self.email
token = {
"name": name,
"preferred_username": username,
"email": self.email,
"stackspin_roles": roles,
}
# Relabel field names
if mapping:
for old_field_name, new_field_name in mapping:
token[new_field_name] = token[old_field_name]
del token[old_field_name]
return dict(id_token=token)

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"""
List of functions to get data from Flux Kustomizations and Helmreleases
"""
import crypt
import secrets
import string
import jinja2
import yaml
from kubernetes import client, config
from kubernetes.client import api_client
from kubernetes.client.exceptions import ApiException
from kubernetes.utils import create_from_yaml
from kubernetes.utils.create_from_yaml import FailToCreateError
from flask import current_app
from config import LOAD_INCLUSTER_CONFIG
# Load the kube config once
#
# By default this loads whatever we define in the `KUBECONFIG` env variable,
# otherwise loads the config from default locations, similar to what kubectl
# does.
if LOAD_INCLUSTER_CONFIG:
config.load_incluster_config()
else:
config.load_kube_config()
def create_variables_secret(app_slug, variables_filepath):
"""Checks if a variables secret for app_name already exists, generates it if necessary.
If a secret already exists, loops through keys from the template, and adds
values for keys that miss in the Kubernetes secret, but are available in
the template.
:param app_slug: The slug of the app, used in the oauth secrets
:type app_slug: string
:param variables_filepath: The path to an existing jinja2 template
:type variables_filepath: string
:return: returns True, unless an exception gets raised by the Kubernetes API
:rtype: boolean
"""
new_secret_dict = read_template_to_dict(
variables_filepath,
{"app": app_slug})
secret_name, secret_namespace = get_secret_metadata(new_secret_dict)
current_secret_data = get_kubernetes_secret_data(
secret_name, secret_namespace
)
if current_secret_data is None:
# Create new secret
update_secret = False
elif current_secret_data.keys() != new_secret_dict["data"].keys():
# Update current secret with new keys
update_secret = True
current_app.logger.info(
f"Secret {secret_name} in namespace {secret_namespace}"
" already exists. Merging..."
)
# Merge dicts. Values from current_secret_data take precedence
new_secret_dict["data"] |= current_secret_data
else:
# Do Nothing
current_app.logger.info(
f"Secret {secret_name} in namespace {secret_namespace}"
" is already in a good state, doing nothing."
)
return True
current_app.logger.info(
f"Storing secret {secret_name} in namespace"
f" {secret_namespace} in cluster."
)
store_kubernetes_secret(
new_secret_dict, secret_namespace, update=update_secret
)
return True
def get_secret_metadata(secret_dict):
"""
Returns secret name and namespace from metadata field in a yaml string.
:param secret_dict: Dictionary of the secret as returned by read_namespaced_secret
:type secret_dict: dict
:return: Tuple containing secret name and secret namespace
:rtype: tuple
"""
secret_name = secret_dict["metadata"]["name"]
# default namespace is flux-system, but other namespace can be
# provided in secret metadata
if "namespace" in secret_dict["metadata"]:
secret_namespace = secret_dict["metadata"]["namespace"]
else:
secret_namespace = "flux-system"
return secret_name, secret_namespace
def get_kubernetes_secret_data(secret_name, namespace):
"""
Get secret from Kubernetes
:param secret_name: Name of the secret
:type secret_name: string
:param namespace: Namespace of the secret
:type namespace: string
:return: The contents of a kubernetes secret or None if the secret does not exist.
:rtype: dict or None
"""
api_client_instance = api_client.ApiClient()
api_instance = client.CoreV1Api(api_client_instance)
try:
secret = api_instance.read_namespaced_secret(secret_name, namespace).data
except ApiException as ex:
# 404 is expected when the optional secret does not exist.
if ex.status != 404:
raise ex
return None
return secret
def get_kubernetes_config_map_data(config_map_name, namespace):
"""
Get ConfigMap from Kubernetes
:param config_map_name: Name of the ConfigMap
:type config_map_name: string
:param namespace: Namespace of the ConfigMap
:type namespace: string
:return: The contents of a kubernetes ConfigMap or None if the cm does not exist.
:rtype: dict or None
"""
api_instance = client.CoreV1Api()
try:
config_map = api_instance.read_namespaced_config_map(config_map_name, namespace).data
except ApiException as ex:
# 404 is expected when the optional secret does not exist.
if ex.status != 404:
raise ex
return None
return config_map
def store_kubernetes_secret(secret_dict, namespace, update=False):
"""
Stores either a new secret in the cluster, or updates an existing one.
:param secret_dict: Dictionary of the secret as returned by read_namespaced_secret
:type secret_dict: dict
:param namespace: Namespace of the secret
:type namespace: string
:param update: If True, use `patch_kubernetes_secret`,
otherwise use `create_from_yaml` (default: False)
:type update: boolean
:return: None
:rtype: None
"""
api_client_instance = api_client.ApiClient()
if update:
verb = "updated"
api_response = patch_kubernetes_secret(secret_dict, namespace)
else:
verb = "created"
try:
api_response = create_from_yaml(
api_client_instance,
yaml_objects=[secret_dict],
namespace=namespace
)
except FailToCreateError as ex:
current_app.logger.info(f"Secret not created because of exception {ex}")
raise ex
current_app.logger.info(f"Secret {verb} with api response: {api_response}")
def store_kustomization(kustomization_template_filepath, app_slug):
"""
Add a kustomization that installs app {app_slug} to the cluster.
:param kustomization_template_filepath: Path to the template that describes
the kustomization. The template should have an `{{ app }}` entry.
:type kustomization_template_filepath: string
:param app_slug: Slug for the app, used to replace `{{ app }}` in the
template
:return: True on success
:rtype: boolean
"""
kustomization_dict = read_template_to_dict(kustomization_template_filepath,
{"app": app_slug})
custom_objects_api = client.CustomObjectsApi()
try:
api_response = custom_objects_api.create_namespaced_custom_object(
group="kustomize.toolkit.fluxcd.io",
version="v1beta2",
namespace="flux-system",
plural="kustomizations",
body=kustomization_dict)
except FailToCreateError as ex:
current_app.logger.info(
f"Could not create {app_slug} Kustomization because of exception {ex}")
raise ex
current_app.logger.debug(f"Kustomization created with api response: {api_response}")
return True
def delete_kustomization(kustomization_name):
"""
Deletes a kustomization.
Note that if the kustomization has `prune: true` in its spec, this will
trigger deletion of other elements generated by the Kustomizartion. See
App.uninstall() to learn what implications this has for what will and will
not be deleted by the kustomize-controller.
:param kustomization_name: name of the kustomization to delete
:type kustomization_name: string
:return: Response of delete API call
:rtype: dict
"""
custom_objects_api = client.CustomObjectsApi()
body = client.V1DeleteOptions()
try:
api_response = custom_objects_api.delete_namespaced_custom_object(
group="kustomize.toolkit.fluxcd.io",
version="v1beta2",
namespace="flux-system",
plural="kustomizations",
name=kustomization_name,
body=body)
except ApiException as ex:
current_app.logger.info(
f"Could not delete {kustomization_name} Kustomization because of exception {ex}")
raise ex
current_app.logger.debug(f"Kustomization deleted with api response: {api_response}")
return api_response
def read_template_to_dict(template_filepath, template_globals):
"""
Reads a Jinja2 template that contains yaml and turns it into a dict.
:param template_filepath: The path to an existing Jinja2 template
:type template_filepath: string
:param template_globals: The variables substituted in the template
:type template_globals: dict
:return: dict, or None if anything fails
"""
env = jinja2.Environment(
extensions=["jinja2_base64_filters.Base64Filters"])
env.filters["generate_password"] = generate_password
# Check if k8s secret already exists, if not, generate it
with open(template_filepath, encoding="UTF-8") as template_file:
lines = template_file.read()
templated_dict = yaml.safe_load(
env.from_string(lines, globals=template_globals).render()
)
return templated_dict
return None
def patch_kubernetes_secret(secret_dict, namespace):
"""
Patches secret in the cluster with new data.
Warning: currently ignores everything that's not in secret_dict["data"]
:param secret_dict: Dictionary of the secret as returned by read_namespaced_secret
:type secret_dict: dict
:param namespace: Namespace of the secret
:type namespace: string
:return: Response of the patch API call
"""
api_client_instance = api_client.ApiClient()
api_instance = client.CoreV1Api(api_client_instance)
name = secret_dict["metadata"]["name"]
body = {}
body["data"] = secret_dict["data"]
return api_instance.patch_namespaced_secret(name, namespace, body)
def generate_password(length):
"""
Generates a password with letters and digits.
:param length: The amount of characters in the password
:type length: int
:return: Generated password
:rtype: string
"""
length = int(length)
password = "".join((secrets.choice(string.ascii_letters + string.digits)
for i in range(length)))
return password
def gen_htpasswd(user, password):
"""
Generate htpasswd entry for user with password.
:param user: Username used in the htpasswd entry
:type user: string
:param password: Password for the user, will get encrypted.
:type password: string
:return: htpassword line entry
:rtype: string
"""
return f"{user}:{crypt.crypt(password, crypt.mksalt(crypt.METHOD_SHA512))}"
def get_all_kustomizations(namespace='flux-system'):
"""
Returns all flux kustomizations in a namespace.
:param namespace: namespace that contains kustomizations. Default: `flux-system`
:type namespace: str
:return: 'items' in dict returned by CustomObjectsApi.list_namespaced_custom_object()
:rtype: dict[]
"""
api = client.CustomObjectsApi()
api_response = api.list_namespaced_custom_object(
group="kustomize.toolkit.fluxcd.io",
version="v1beta1",
plural="kustomizations",
namespace=namespace,
)
return api_response
def get_all_helmreleases(namespace='stackspin', label_selector=""):
"""
Lists all helmreleases in a certain namespace (stackspin by default)
:param namespace: namespace that contains helmreleases. Default: `stackspin-apps`
:type namespace: str
:param label_selector: a label selector to limit the list (optional)
:type label_selector: str
:return: List of helmreleases
:rtype: dict[]
"""
api_instance = client.CustomObjectsApi()
try:
api_response = api_instance.list_namespaced_custom_object(
group="helm.toolkit.fluxcd.io",
version="v2beta1",
namespace=namespace,
plural="helmreleases",
label_selector=label_selector)
except ApiException as error:
if error.status == 404:
return None
# Raise all non-404 errors
raise error
return api_response['items']
def get_kustomization(name, namespace='flux-system'):
"""
Returns all info of a Flux kustomization with name 'name'
:param name: Name of the kustomizatoin
:type name: string
:param namespace: Namespace of the kustomization
:type namespace: string
:return: kustomization as returned by the API
:rtype: dict
"""
api = client.CustomObjectsApi()
try:
resource = api.get_namespaced_custom_object(
group="kustomize.toolkit.fluxcd.io",
version="v1beta1",
name=name,
namespace=namespace,
plural="kustomizations",
)
except client.exceptions.ApiException as error:
if error.status == 404:
return None
# Raise all non-404 errors
raise error
return resource

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Single-database configuration for Flask.

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# A generic, single database configuration.
[alembic]
# template used to generate migration files
# file_template = %%(rev)s_%%(slug)s
# set to 'true' to run the environment during
# the 'revision' command, regardless of autogenerate
# revision_environment = false
# Logging configuration
[loggers]
keys = root,sqlalchemy,alembic,flask_migrate
[handlers]
keys = console
[formatters]
keys = generic
[logger_root]
level = WARN
handlers = console
qualname =
[logger_sqlalchemy]
level = WARN
handlers =
qualname = sqlalchemy.engine
[logger_alembic]
level = INFO
handlers =
qualname = alembic
[logger_flask_migrate]
level = INFO
handlers =
qualname = flask_migrate
[handler_console]
class = StreamHandler
args = (sys.stderr,)
level = NOTSET
formatter = generic
[formatter_generic]
format = %(levelname)-5.5s [%(name)s] %(message)s
datefmt = %H:%M:%S

91
backend/migrations/env.py Normal file
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from __future__ import with_statement
import logging
from logging.config import fileConfig
from flask import current_app
from alembic import context
# this is the Alembic Config object, which provides
# access to the values within the .ini file in use.
config = context.config
# Interpret the config file for Python logging.
# This line sets up loggers basically.
fileConfig(config.config_file_name)
logger = logging.getLogger('alembic.env')
# add your model's MetaData object here
# for 'autogenerate' support
# from myapp import mymodel
# target_metadata = mymodel.Base.metadata
config.set_main_option(
'sqlalchemy.url',
str(current_app.extensions['migrate'].db.get_engine().url).replace(
'%', '%%'))
target_metadata = current_app.extensions['migrate'].db.metadata
# other values from the config, defined by the needs of env.py,
# can be acquired:
# my_important_option = config.get_main_option("my_important_option")
# ... etc.
def run_migrations_offline():
"""Run migrations in 'offline' mode.
This configures the context with just a URL
and not an Engine, though an Engine is acceptable
here as well. By skipping the Engine creation
we don't even need a DBAPI to be available.
Calls to context.execute() here emit the given string to the
script output.
"""
url = config.get_main_option("sqlalchemy.url")
context.configure(
url=url, target_metadata=target_metadata, literal_binds=True
)
with context.begin_transaction():
context.run_migrations()
def run_migrations_online():
"""Run migrations in 'online' mode.
In this scenario we need to create an Engine
and associate a connection with the context.
"""
# this callback is used to prevent an auto-migration from being generated
# when there are no changes to the schema
# reference: http://alembic.zzzcomputing.com/en/latest/cookbook.html
def process_revision_directives(context, revision, directives):
if getattr(config.cmd_opts, 'autogenerate', False):
script = directives[0]
if script.upgrade_ops.is_empty():
directives[:] = []
logger.info('No changes in schema detected.')
connectable = current_app.extensions['migrate'].db.get_engine()
with connectable.connect() as connection:
context.configure(
connection=connection,
target_metadata=target_metadata,
process_revision_directives=process_revision_directives,
**current_app.extensions['migrate'].configure_args
)
with context.begin_transaction():
context.run_migrations()
if context.is_offline_mode():
run_migrations_offline()
else:
run_migrations_online()

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"""${message}
Revision ID: ${up_revision}
Revises: ${down_revision | comma,n}
Create Date: ${create_date}
"""
from alembic import op
import sqlalchemy as sa
${imports if imports else ""}
# revision identifiers, used by Alembic.
revision = ${repr(up_revision)}
down_revision = ${repr(down_revision)}
branch_labels = ${repr(branch_labels)}
depends_on = ${repr(depends_on)}
def upgrade():
${upgrades if upgrades else "pass"}
def downgrade():
${downgrades if downgrades else "pass"}

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"""empty message
Revision ID: 27761560bbcb
Revises:
Create Date: 2021-12-21 06:07:14.857940
"""
import sqlalchemy as sa
from alembic import op
# revision identifiers, used by Alembic.
revision = "27761560bbcb"
down_revision = None
branch_labels = None
depends_on = None
def upgrade():
# ### commands auto generated by Alembic - please adjust! ###
op.create_table(
"app",
sa.Column("id", sa.Integer(), nullable=False),
sa.Column("name", sa.String(length=64), nullable=True),
sa.Column("slug", sa.String(length=64), nullable=True),
sa.PrimaryKeyConstraint("id"),
sa.UniqueConstraint("slug"),
)
op.create_table(
"app_role",
sa.Column("user_id", sa.String(length=64), nullable=False),
sa.Column("app_id", sa.Integer(), nullable=False),
sa.Column("role", sa.String(length=64), nullable=True),
sa.ForeignKeyConstraint(
["app_id"],
["app.id"],
),
sa.PrimaryKeyConstraint("user_id", "app_id"),
)
# ### end Alembic commands ###
def downgrade():
# ### commands auto generated by Alembic - please adjust! ###
op.drop_table("app_role")
op.drop_table("app")
# ### end Alembic commands ###

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"""convert role column to table
Revision ID: 5f462d2d9d25
Revises: 27761560bbcb
Create Date: 2022-04-13 15:00:27.182898
"""
from alembic import op
import sqlalchemy as sa
from sqlalchemy.dialects import mysql
# revision identifiers, used by Alembic.
revision = "5f462d2d9d25"
down_revision = "27761560bbcb"
branch_labels = None
depends_on = None
def upgrade():
# ### commands auto generated by Alembic - please adjust! ###
role_table = op.create_table(
"role",
sa.Column("id", sa.Integer(), nullable=False),
sa.Column("name", sa.String(length=64), nullable=True),
sa.PrimaryKeyConstraint("id"),
)
op.add_column("app_role", sa.Column("role_id", sa.Integer(), nullable=True))
op.create_foreign_key(None, "app_role", "role", ["role_id"], ["id"])
# ### end Alembic commands ###
# Insert default role "admin" as ID 1
op.execute(sa.insert(role_table).values(id=1,name="admin"))
# Set role_id 1 to all current "admin" users
op.execute("UPDATE app_role SET role_id = 1 WHERE role = 'admin'")
# Drop old column
op.drop_column("app_role", "role")
def downgrade():
# ### commands auto generated by Alembic - please adjust! ###
op.add_column(
"app_role", sa.Column("role", mysql.VARCHAR(length=64), nullable=True)
)
op.drop_constraint(None, "app_role", type_="foreignkey")
op.drop_column("app_role", "role_id")
op.drop_table("role")
# ### end Alembic commands ###

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"""update apps and add 'user' and 'no access' role
Revision ID: b514cca2d47b
Revises: 5f462d2d9d25
Create Date: 2022-06-08 17:24:51.305129
"""
from alembic import op
import sqlalchemy as sa
# revision identifiers, used by Alembic.
revision = 'b514cca2d47b'
down_revision = '5f462d2d9d25'
branch_labels = None
depends_on = None
def upgrade():
# ### end Alembic commands ###
# Check and update app table in DB
apps = {
"dashboard": "Dashboard",
"wekan": "Wekan",
"wordpress": "WordPress",
"nextcloud": "Nextcloud",
"zulip": "Zulip"
}
# app table
app_table = sa.table('app', sa.column('id', sa.Integer), sa.column(
'name', sa.String), sa.column('slug', sa.String))
existing_apps = op.get_bind().execute(app_table.select()).fetchall()
existing_app_slugs = [app['slug'] for app in existing_apps]
for app_slug in apps.keys():
if app_slug in existing_app_slugs:
op.execute(f'UPDATE app SET `name` = "{apps.get(app_slug)}" WHERE slug = "{app_slug}"')
else:
op.execute(f'INSERT INTO app (`name`, slug) VALUES ("{apps.get(app_slug)}","{app_slug}")')
# Fetch all apps including newly created
existing_apps = op.get_bind().execute(app_table.select()).fetchall()
# Insert role "user" as ID 2
op.execute("INSERT INTO `role` (id, `name`) VALUES (2, 'user')")
# Insert role "no access" as ID 3
op.execute("INSERT INTO `role` (id, `name`) VALUES (3, 'no access')")
# Set role_id 2 to all current "user" users which by have NULL role ID
op.execute("UPDATE app_role SET role_id = 2 WHERE role_id IS NULL")
# Add 'no access' role for all users that don't have any roles for specific apps
app_roles_table = sa.table('app_role', sa.column('user_id', sa.String), sa.column(
'app_id', sa.Integer), sa.column('role_id', sa.Integer))
app_ids = [app['id'] for app in existing_apps]
app_roles = op.get_bind().execute(app_roles_table.select()).fetchall()
user_ids = set([app_role['user_id'] for app_role in app_roles])
for user_id in user_ids:
existing_user_app_ids = [x['app_id'] for x in list(filter(lambda role: role['user_id'] == user_id, app_roles))]
missing_user_app_ids = [x for x in app_ids if x not in existing_user_app_ids]
if len(missing_user_app_ids) > 0:
values = [{'user_id': user_id, 'app_id': app_id, 'role_id': 3} for app_id in missing_user_app_ids]
op.bulk_insert(app_roles_table, values)
def downgrade():
# Revert all users role_id to NULL where role is 'user'
op.execute("UPDATE app_role SET role_id = NULL WHERE role_id = 2")
# Delete role 'user' from roles
op.execute("DELETE FROM `role` WHERE id = 2")
# Delete all user app roles where role is 'no access' with role_id 3
op.execute("DELETE FROM app_role WHERE role_id = 3")
# Delete role 'no access' from roles
op.execute("DELETE FROM `role` WHERE id = 3")

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"""Add fields for external apps
Revision ID: e08df0bef76f
Revises: b514cca2d47b
Create Date: 2022-09-23 16:38:06.557307
"""
from alembic import op
import sqlalchemy as sa
# revision identifiers, used by Alembic.
revision = 'e08df0bef76f'
down_revision = 'b514cca2d47b'
branch_labels = None
depends_on = None
def upgrade():
# ### commands auto generated by Alembic - please adjust! ###
op.add_column('app', sa.Column('external', sa.Boolean(), server_default='0', nullable=False))
op.add_column('app', sa.Column('url', sa.String(length=128), nullable=True))
# ### end Alembic commands ###
# Add monitoring app
op.execute(f'INSERT IGNORE INTO app (`name`, `slug`) VALUES ("Monitoring","monitoring")')
def downgrade():
# ### commands auto generated by Alembic - please adjust! ###
op.drop_column('app', 'url')
op.drop_column('app', 'external')
# ### end Alembic commands ###

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# Default server configuration
#
server {
listen 8081 default_server;
listen [::]:8081 default_server;
root /var/www/html;
index index.html;
server_name _;
# Flask app
location / {
proxy_pass http://flask_app:5000/;
proxy_redirect default;
proxy_set_header X-Forwarded-For $proxy_add_x_forwarded_for;
}
# Kratos Public
location /kratos/ {
proxy_pass http://kube_port_kratos_public:8080/;
proxy_redirect default;
proxy_set_header X-Forwarded-For $proxy_add_x_forwarded_for;
}
}

9
backend/renovate.json Normal file
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{
"$schema": "https://docs.renovatebot.com/renovate-schema.json",
"extends": [
"local>stackspin/renovate-config:default"
],
"assignees": [
"luka"
]
}

40
backend/requirements.txt Normal file
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attrs==21.4.0
black==22.1.0
certifi==2021.10.8
cffi==1.15.0
charset-normalizer==2.0.12
click==8.0.4
cryptography==36.0.2
Flask==2.0.3
Flask-Cors==3.0.10
flask-expects-json==1.7.0
Flask-JWT-Extended==4.3.1
gunicorn==20.1.0
idna==3.3
install==1.3.5
itsdangerous==2.1.1
jsonschema==4.4.0
Jinja2==3.0.3
jinja2-base64-filters==0.1.4
kubernetes==24.2.0
MarkupSafe==2.1.1
mypy-extensions==0.4.3
oauthlib==3.2.0
pathspec==0.9.0
platformdirs==2.5.1
pycparser==2.21
PyJWT==2.3.0
pyrsistent==0.18.1
regex==2022.3.15
requests==2.27.1
requests-oauthlib==1.3.1
six==1.16.0
tomli==1.2.3
typing-extensions==4.1.1
urllib3==1.26.8
Werkzeug==2.0.3
ory-kratos-client==0.9.0a2
pymysql
Flask-SQLAlchemy
hydra-client
Flask-Migrate

32
backend/run_app.sh Executable file
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#!/usr/bin/env bash
set -euo pipefail
export DATABASE_PASSWORD=$(kubectl get secret -n flux-system stackspin-single-sign-on-variables -o jsonpath --template '{.data.dashboard_database_password}' | base64 -d)
export DOMAIN=$(kubectl get secret -n flux-system stackspin-cluster-variables -o jsonpath --template '{.data.domain}' | base64 -d)
export HYDRA_CLIENT_SECRET=$(kubectl get secret -n flux-system stackspin-dashboard-local-oauth-variables -o jsonpath --template '{.data.client_secret}' | base64 -d)
export FLASK_SECRET_KEY=$(kubectl get secret -n flux-system stackspin-dashboard-variables -o jsonpath --template '{.data.backend_secret_key}' | base64 -d)
if [[ -z "$DATABASE_PASSWORD" ]]; then
echo "Could not find database password in stackspin-single-sign-on-variables secret"
exit 1
fi
if [[ -z "$DOMAIN" ]]; then
echo "Could not find domain name in stackspin-cluster-variables secret"
exit 1
fi
if [[ -z "$FLASK_SECRET_KEY" ]]; then
echo "Could not find backend_secret_key in stackspin-dashboard-variables secret"
exit 1
fi
if [[ -z "$HYDRA_CLIENT_SECRET" ]]; then
echo "Could not find client_secret in stackspin-dashboard-local-oauth-variables secret"
echo "make sure you add this secret following instructions in the dashboard-dev-overrides repository"
exit 1
fi
KUBECTL_UID=${UID:-1001} KUBECTL_GID=${GID:-0} docker compose up

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backend/web/__init__.py Normal file
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import os
from flask import Blueprint
web = Blueprint(
"web",
__name__,
url_prefix="/web",
static_folder="static",
template_folder="templates",
)

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from .login import *

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backend/web/login/login.py Normal file
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"""Flask application which provides the interface of a login panel. The
application interacts with different backend, like the Kratos backend for users,
Hydra for OIDC sessions and MariaDB for application and role specifications.
The application provides also several command line options to interact with
the user entries in the database(s)"""
import urllib.parse
import urllib.request
import ast
import hydra_client
import ory_kratos_client
from ory_kratos_client.api import v0alpha2_api as kratos_api
from flask import abort, redirect, render_template, request, current_app
from database import db
from helpers import KratosUser
from config import *
from web import web
from areas.apps import AppRole, App
from areas.roles import RoleService
# This is a circular import and should be solved differently
# from app import db
# APIs
# Create HYDRA & KRATOS API interfaces
HYDRA = hydra_client.HydraAdmin(HYDRA_ADMIN_URL)
# Kratos has an admin and public end-point. We create an API for them
# both. The kratos implementation has bugs, which forces us to set
# the discard_unknown_keys to True.
kratos_admin_api_configuration = \
ory_kratos_client.Configuration(host=KRATOS_ADMIN_URL, discard_unknown_keys=True)
KRATOS_ADMIN = \
kratos_api.V0alpha2Api(ory_kratos_client.ApiClient(kratos_admin_api_configuration))
kratos_public_api_configuration = \
ory_kratos_client.Configuration(host=KRATOS_PUBLIC_URL, discard_unknown_keys=True)
KRATOS_PUBLIC = \
kratos_api.V0alpha2Api(ory_kratos_client.ApiClient(kratos_public_api_configuration))
ADMIN_ROLE_ID = 1
NO_ACCESS_ROLE_ID = 3
##############################################################################
# WEB ROUTES #
##############################################################################
@web.route("/recovery", methods=["GET", "POST"])
def recovery():
"""Start recovery flow
If no active flow, redirect to kratos to create a flow, otherwise render the
recovery template.
:param flow: flow as given by Kratos
:return: redirect or recovery page
"""
flow = request.args.get("flow")
if not flow:
return redirect(KRATOS_PUBLIC_URL + "self-service/recovery/browser")
return render_template("recover.html", api_url=KRATOS_PUBLIC_URL)
@web.route("/settings", methods=["GET", "POST"])
def settings():
"""Start settings flow
If no active flow, redirect to kratos to create a flow, otherwise render the
settings template.
:param flow: flow as given by Kratos
:return: redirect or settings page
"""
flow = request.args.get("flow")
if not flow:
return redirect(KRATOS_PUBLIC_URL + "self-service/settings/browser")
return render_template("settings.html", api_url=KRATOS_PUBLIC_URL)
@web.route("/error", methods=["GET"])
def error():
"""Show error messages from Kratos
Implements user-facing errors as described in
https://www.ory.sh/docs/kratos/self-service/flows/user-facing-errors
:param id: error ID as given by Kratos
:return: redirect or settings page
"""
error_id = request.args.get("id")
api_response = ""
try:
# Get Self-Service Errors
api_response = KRATOS_ADMIN.get_self_service_error(error_id)
except ory_kratos_client.ApiException as ex:
current_app.logger.error(
"Exception when calling V0alpha2Api->get_self_service_error: %s\n",
ex)
return render_template("error.html", error_message=api_response)
@web.route("/login", methods=["GET", "POST"])
def login():
"""Start login flow
If already logged in, shows the loggedin template. Otherwise creates a login
flow, if no active flow will redirect to kratos to create a flow.
:param flow: flow as given by Kratos
:return: redirect or login page
"""
# Check if we are logged in:
identity = get_auth()
if identity:
return render_template("loggedin.html", api_url=KRATOS_PUBLIC_URL, id=id)
flow = request.args.get("flow")
# If we do not have a flow, get one.
if not flow:
return redirect(KRATOS_PUBLIC_URL + "self-service/login/browser")
return render_template("login.html", api_url=KRATOS_PUBLIC_URL)
@web.route("/auth", methods=["GET", "POST"])
def auth():
"""Authorize an user for an application
If an application authenticated against the IdP (Idenitity Provider), if
there are no active session, the user is forwarded to the login page.
This is the entry point for those authorization requests. The challenge
as provided, is verified. If an active user is logged in, the request
is accepted and the user is returned to the application. If the user is not
logged in yet, it redirects to the login page
:param challenge: challenge as given by Hydra
:return: redirect to login or application/idp
"""
challenge = None
# Retrieve the challenge id from the request. Depending on the method it is
# saved in the form (POST) or in a GET variable. If this variable is not set
# we can not continue.
if request.method == "GET":
challenge = request.args.get("login_challenge")
if request.method == "POST":
challenge = request.args.post("login_challenge")
if not challenge:
current_app.logger.error("No challenge given. Error in request")
abort(400, description="Challenge required when requesting authorization")
# Check if we are logged in:
identity = get_auth()
# If the user is not logged in yet, we redirect to the login page
# but before we do that, we set the "flow_state" cookie to auth.
# so the UI knows it has to redirect after a successful login.
# The redirect URL is back to this page (auth) with the same challenge
# so we can pickup the flow where we left off.
if not identity:
url = LOGIN_PANEL_URL + "/auth?login_challenge=" + challenge
url = urllib.parse.quote_plus(url)
current_app.logger.info("Redirecting to login. Setting flow_state cookies")
current_app.logger.info("auth_url: " + url)
response = redirect(LOGIN_PANEL_URL + "/login")
response.set_cookie("flow_state", "auth")
response.set_cookie("auth_url", url)
return response
current_app.logger.info("User is logged in. We can authorize the user")
try:
login_request = HYDRA.login_request(challenge)
except hydra_client.exceptions.NotFound:
current_app.logger.error(
f"Not Found. Login request not found. challenge={challenge}"
)
abort(404, description="Login request not found. Please try again.")
except hydra_client.exceptions.HTTPError:
current_app.logger.error(
f"Conflict. Login request has been used already. challenge={challenge}"
)
abort(503, description="Login request already used. Please try again.")
# Authorize the user
# False positive: pylint: disable=no-member
redirect_to = login_request.accept(
identity.id,
remember=True,
# Remember session for 7d
remember_for=60 * 60 * 24 * 7,
)
return redirect(redirect_to)
@web.route("/consent", methods=["GET", "POST"])
def consent():
"""Get consent
For now, it just allows every user. Eventually this function should check
the roles and settings of a user and provide that information to the
application.
:param consent_challenge: challenge as given by Hydra
:return: redirect to login or render error
"""
challenge = request.args.get("consent_challenge")
if not challenge:
abort(
403, description="Consent request required. Do not call this page directly"
)
try:
consent_request = HYDRA.consent_request(challenge)
except hydra_client.exceptions.NotFound:
current_app.logger.error(f"Not Found. Consent request {challenge} not found")
abort(404, description="Consent request does not exist. Please try again")
except hydra_client.exceptions.HTTPError:
current_app.logger.error(f"Conflict. Consent request {challenge} already used")
abort(503, description="Consent request already used. Please try again")
# Get information about this consent request:
# False positive: pylint: disable=no-member
try:
consent_client = consent_request.client
# Some versions of Hydra module return a string object and need to be decoded
if isinstance(consent_client, str):
consent_client = ast.literal_eval(consent_client)
app_id = consent_client.get("client_id")
# False positive: pylint: disable=no-member
kratos_id = consent_request.subject
current_app.logger.info(f"Info: Found kratos_id {kratos_id}")
current_app.logger.info(f"Info: Found app_id {app_id}")
except Exception as ex:
current_app.logger.error(
"Error: Unable to extract information from consent request"
)
current_app.logger.error(f"Error: {ex}")
current_app.logger.error(f"Client: {consent_request.client}")
current_app.logger.error(f"Subject: {consent_request.subject}")
abort(501, description="Internal error occured")
# Get the related user object
current_app.logger.info(f"Info: Getting user from admin {kratos_id}")
user = KratosUser(KRATOS_ADMIN, kratos_id)
if not user:
current_app.logger.error(f"User not found in database: {kratos_id}")
abort(401, description="User not found. Please try again.")
# Get role on dashboard
dashboard_app = db.session.query(App).filter(
App.slug == 'dashboard').first()
if dashboard_app:
role_object = (
db.session.query(AppRole)
.filter(AppRole.app_id == dashboard_app.id)
.filter(AppRole.user_id == user.uuid)
.first()
)
# If the user is dashboard admin admin is for all
if role_object is not None and role_object.role_id == ADMIN_ROLE_ID:
current_app.logger.info(f"Info: User has admin dashboard role")
current_app.logger.info(f"Providing consent to {app_id} for {kratos_id}")
current_app.logger.info(f"{kratos_id} was granted admin access to {app_id}")
# Get claims for this user, provided the current app
claims = user.get_claims(app_id, ['admin'])
return redirect(
consent_request.accept(
grant_scope=consent_request.requested_scope,
grant_access_token_audience=consent_request.requested_access_token_audience,
session=claims,
)
)
# Get role on this app
app_obj = db.session.query(App).filter(App.slug == app_id).first()
# Default access level
roles = []
if app_obj:
role_object = (
db.session.query(AppRole)
.filter(AppRole.app_id == app_obj.id)
.filter(AppRole.user_id == user.uuid)
.first()
)
# Role ID 3 is always "No access" due to migration b514cca2d47b
if role_object is None or role_object.role_id is None or role_object.role_id == NO_ACCESS_ROLE_ID:
# If there is no role in app_roles or the role_id for an app is null user has no permissions
current_app.logger.error(f"User has no access for: {app_obj.name}")
return redirect(
consent_request.reject(
error="No access",
error_description="The user has no access for app",
error_hint="Contact your administrator",
status_code=401,
)
)
else:
roles.append(role_object.role.name)
current_app.logger.info(f"Using '{roles}' when applying consent for {kratos_id}")
# Get claims for this user, provided the current app
claims = user.get_claims(app_id, roles)
# pylint: disable=fixme
# TODO: Need to implement checking claims here, once the backend for that is
# developed
current_app.logger.info(f"Providing consent to {app_id} for {kratos_id}")
current_app.logger.info(f"{kratos_id} was granted access to {app_id}")
# False positive: pylint: disable=no-member
return redirect(
consent_request.accept(
grant_scope=consent_request.requested_scope,
grant_access_token_audience=consent_request.requested_access_token_audience,
session=claims,
)
)
@web.route("/status", methods=["GET", "POST"])
def status():
"""Get status of current session
Show if there is an user is logged in. If not shows: not-auth
"""
auth_status = get_auth()
if auth_status:
return auth_status.id
return "not-auth"
def get_auth():
"""Checks if user is logged in
Queries the cookies. If an authentication cookie is found, it
checks with Kratos if the cookie is still valid. If so,
the profile is returned. Otherwise False is returned.
:return: Profile or False if not logged in
"""
cookie = get_kratos_cookie()
if not cookie:
return False
# Given a cookie, check if it is valid and get the profile
try:
api_response = KRATOS_PUBLIC.to_session(cookie=cookie)
# Get all traits from ID
return api_response.identity
except ory_kratos_client.ApiException as ex:
current_app.logger.error(
f"Exception when calling V0alpha2Api->to_session(): {ex}\n"
)
return False
def get_kratos_cookie():
"""Retrieves the Kratos cookie from the session.
Returns False if the cookie does not exist or is corrupted.
"""
try:
cookie = request.cookies.get("ory_kratos_session")
cookie = "ory_kratos_session=" + cookie
except TypeError:
current_app.logger.info("User not logged in or cookie corrupted")
cookie = False
return cookie
@web.route("/prelogout", methods=["GET"])
def prelogout():
"""Handles the Hydra OpenID Connect Logout flow
Steps:
1. Hydra's /oauth2/sessions/logout endpoint is called by an application
2. Hydra calls this endpoint with a `logout_challenge` get parameter
3. We retrieve the logout request using the challenge
4. We accept the Hydra logout request
5. We redirect to Hydra to clean-up cookies.
6. Hyrda calls back to us with a post logout handle (/logout)
Args:
logout_challenge (string): Reference to a Hydra logout challenge object
Returns:
Redirect to the url that is provided by the LogoutRequest object.
"""
challenge = request.args.get("logout_challenge")
current_app.logger.info("Logout request: challenge=%s", challenge)
if not challenge:
abort(403)
try:
logout_request = HYDRA.logout_request(challenge)
except hydra_client.exceptions.NotFound:
current_app.logger.error("Logout request with challenge '%s' not found", challenge)
abort(404, "Hydra session invalid or not found")
except hydra_client.exceptions.HTTPError:
current_app.logger.error(
"Conflict. Logout request with challenge '%s' has been used already.",
challenge)
abort(503)
current_app.logger.info("Logout request hydra, subject %s", logout_request.subject)
# Accept logout request and direct to hydra to remove cookies
try:
hydra_return = logout_request.accept(subject=logout_request.subject)
if hydra_return:
return redirect(hydra_return)
except Exception as ex:
current_app.logger.info("Error logging out hydra: %s", str(ex))
current_app.logger.info("Hydra logout not completed. Redirecting to kratos logout, maybe user removed cookies manually")
return redirect("logout")
@web.route("/logout", methods=["GET"])
def logout():
"""Handles the Kratos Logout flow
Steps:
1. We got here from hyrda
2. We retrieve the Kratos cookie from the browser
3. We generate a Kratos logout URL
4. We redirect to the Kratos logout URIL
"""
kratos_cookie = get_kratos_cookie()
if not kratos_cookie:
# No kratos cookie, already logged out
current_app.logger.info("Expected kratos cookie but not found. Redirecting to login");
return redirect("login")
try:
# Create a Logout URL for Browsers
kratos_api_response = \
KRATOS_ADMIN.create_self_service_logout_flow_url_for_browsers(
cookie=kratos_cookie)
current_app.logger.info(kratos_api_response)
except ory_kratos_client.ApiException as ex:
current_app.logger.error("Exception when calling"
" V0alpha2Api->create_self_service_logout_flow_url_for_browsers: %s\n",
ex)
return redirect(kratos_api_response.logout_url)

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/* base.js
This is the base JS file to render the user interfaces of kratos and provide
the end user with flows for login, recovery etc.
check_flow_*():
These functions check the status of the flow and based on the status do some
action to get a better experience for the end user. Usually this is a
redirect based on the state
flow_*():
execute / render all UI elements in a flow. Kratos expects you to work on
to query kratos which provides you with the UI elements needed to be
rendered. This querying and rendering is done exectly by those function.
Based on what kratos provides or the state of the flow, elements are maybe
hidden or shown
*/
// Check if an auth flow is configured and redirect to auth page in that
// case.
function check_flow_auth() {
var state = Cookies.get('flow_state');
var url = Cookies.get('auth_url');
if (state == 'auth') {
Cookies.set('flow_state','');
window.location.href = url;
}
}
// Check if there if the flow is expired, if so, reset the cookie
function check_flow_expired() {
var state = Cookies.get('flow_state');
if (state == 'flow_expired') {
Cookies.set('flow_state','');
$("#contentFlowExpired").show();
}
}
// The script executed on login flows
function flow_login() {
var flow = $.urlParam('flow');
var uri = api_url + 'self-service/login/flows?id=' + flow;
// Query the Kratos backend to know what fields to render for the
// current flow
$.ajax({
type: "GET",
url: uri,
success: function(data) {
// Render login form (group: password)
var html = render_form(data, 'password');
$("#contentLogin").html(html);
},
complete: function(obj) {
// If we get a 410, the flow is expired, need to refresh the flow
if (obj.status == 410) {
Cookies.set('flow_state','flow_expired');
// If we call the page without arguments, we get a new flow
window.location.href = 'login';
}
}
});
}
// This is called after a POST on settings. It tells if the save was
// successful and display / handles based on that outcome
function flow_settings_validate() {
var flow = $.urlParam('flow');
var uri = api_url + 'self-service/settings/flows?id=' + flow;
$.ajax( {
type: "GET",
url: uri,
success: function(data) {
// We had success. We save that fact in our flow_state
// cookie and regenerate a new flow
if (data.state == 'success') {
Cookies.set('flow_state', 'settings_saved');
// Redirect to generate new flow ID
window.location.href = 'settings';
}
else {
// There was an error, Kratos does not specify what is
// wrong. So we just show the general error message and
// let the user figure it out. We can re-use the flow-id
$("#contentProfileSaveFailed").show();
// For now, this code assumes that only the password can fail
// validation. Other forms might need to be added in the future.
html = render_form(data, 'password')
$("#contentPassword").html(html)
}
}
});
}
// Render the settings flow, this is where users can change their personal
// settings, like name and password. The form contents are defined by Kratos
function flow_settings() {
// Get the details from the current flow from kratos
var flow = $.urlParam('flow');
var uri = api_url + 'self-service/settings/flows?id=' + flow;
$.ajax({
type: "GET",
url: uri,
success: function(data) {
var state = Cookies.get('flow_state')
// If we have confirmation the settings are saved, show the
// notification
if (state == 'settings_saved') {
$("#contentProfileSaved").show();
Cookies.set('flow_state', 'settings');
}
// Hide prfile section if we are in recovery state
// so the user is not confused by other fields. The user
// probably want to setup a password only first.
if (state == 'recovery') {
$("#contentProfile").hide();
}
// Render the password & profile form based on the fields we got
// from the API
var html = render_form(data, 'password');
$("#contentPassword").html(html);
html = render_form(data, 'profile');
$("#contentProfile").html(html);
// If the submit button is hit, execute the POST with Ajax.
$("#formpassword").submit(function(e) {
// avoid to execute the actual submit of the form.
e.preventDefault();
var form = $(this);
var url = form.attr('action');
$.ajax({
type: "POST",
url: url,
data: form.serialize(),
complete: function(obj) {
// Validate the settings
flow_settings_validate();
},
});
});
},
complete: function(obj) {
// If we get a 410, the flow is expired, need to refresh the flow
if (obj.status == 410) {
Cookies.set('flow_state','flow_expired');
window.location.href = 'settings';
}
}
});
}
function flow_recover() {
var flow = $.urlParam('flow');
var uri = api_url + 'self-service/recovery/flows?id=' + flow;
$.ajax( {
type: "GET",
url: uri,
success: function(data) {
// Render the recover form, method 'link'
var html = render_form(data, 'link');
$("#contentRecover").html(html);
// Do form post as an AJAX call
$("#formlink").submit(function(e) {
// avoid to execute the actual submit of the form.
e.preventDefault();
var form = $(this);
var url = form.attr('action');
// keep stat we are in recovery
Cookies.set('flow_state', 'recovery');
$.ajax({
type: "POST",
url: url,
data: form.serialize(), // serializes the form's elements.
success: function(data)
{
// Show the request is sent out
$("#contentRecover").hide();
$("#contentRecoverRequested").show();
}
});
});
},
complete: function(obj) {
// If we get a 410, the flow is expired, need to refresh the flow
if (obj.status == 410) {
Cookies.set('flow_state','flow_expired');
window.location.href = 'recovery';
}
}
});
}
// Based on Kratos UI data and a group name, get the full form for that group.
// kratos groups elements which belongs together in a group and should be posted
// at once. The elements in the default group should be part of all other
// groups.
//
// data: data object as returned form the API
// group: group to render.
function render_form(data, group) {
// Create form
var action = data.ui.action;
var method = data.ui.method;
var form = "<form id='form"+group+"' method='"+method+"' action='"+action+"'>";
for (const node of data.ui.nodes) {
var name = node.attributes.name;
var type = node.attributes.type;
var value = node.attributes.value;
var messages = node.messages
if (node.group == 'default' || node.group == group) {
var elm = getFormElement(type, name, value, messages);
form += elm;
}
}
form += "</form>";
return form;
}
// Return form element based on name, including help text (sub), placeholder etc.
// Kratos give us form names and types and specifies what to render. However
// it does not provide labels or translations. This function returns a HTML
// form element based on the fields provided by Kratos with proper names and
// labels
// type: input type, usual "input", "hidden" or "submit". But bootstrap types
// like "email" are also supported
// name: name of the field. Used when posting data
// value: If there is already a value known, show it
// messages: error messages related to the field
function getFormElement(type, name, value, messages) {
console.log("Getting form element", type, name, value, messages)
if (value == undefined) {
value = '';
}
if (typeof(messages) == "undefined") {
messages = []
}
if (name == 'email' || name == 'traits.email') {
return getFormInput(
'email',
name,
value,
'E-mail address',
'Please enter your e-mail address here',
'Please provide your e-mail address. We will send a recovery ' +
'link to that e-mail address.',
messages,
);
}
if (name == 'traits.username') {
return getFormInput(
'name',
name,
value,
'Username',
'Please provide an username',
null,
messages,
);
}
if (name == 'traits.name') {
return getFormInput(
'name',
name,
value,
'Full name',
'Please provide your full name',
null,
messages,
);
}
if (name == 'identifier') {
return getFormInput(
'email',
name,
value,
'E-mail address',
'Please provide your e-mail address to log in',
null,
messages,
);
}
if (name == 'password') {
return getFormInput(
'password',
name,
value,
'Password',
'Please provide your password',
null,
messages,
);
}
if (type == 'hidden' || name == 'traits.uuid') {
return `
<input type="hidden" class="form-control" id="`+name+`"
name="`+name+`" value='`+value+`'>`;
}
if (type == 'submit') {
return `<div class="form-group">
<input type="hidden" name="`+name+`" value="`+value+`">
<button type="submit" class="btn btn-primary">Go!</button>
</div>`;
}
return getFormInput('input', name, value, name, null,null, messages);
}
// Usually called by getFormElement, generic function to generate an
// input box.
// param type: type of input, like 'input', 'email', 'password'
// param name: name of form field, used when posting the form
// param value: preset value of the field
// param label: Label to display above field
// param placeHolder: Label to display in field if empty
// param help: Additional help text, displayed below the field in small font
// param messages: Message about failed input
function getFormInput(type, name, value, label, placeHolder, help, messages) {
if (typeof(help) == "undefined" || help == null) {
help = ""
}
console.log("Messages: ", messages);
// Id field for help element
var nameHelp = name + "Help";
var element = '<div class="form-group">';
element += '<label for="'+name+'">'+label+'</label>';
element += '<input type="'+type+'" class="form-control" id="'+name+'" name="'+name+'" ';
// messages get appended to help info
if (messages.length) {
for (message in messages) {
console.log("adding message", messages[message])
help += messages[message]['text']
}
}
// If we are a password field, add a eye icon to reveal password
if (value) {
element += 'value="'+value+'" ';
}
if (help) {
element += 'aria-describedby="' + nameHelp +'" ';
}
if (placeHolder) {
element += 'placeholder="'+placeHolder+'" ';
}
element += ">";
if (help) {
element +=
`<small id="`+nameHelp+`" class="form-text text-muted">` + help + `
</small>`;
}
element += '</div>';
return element;
}
// $.urlParam get parameters from the URI. Example: id = $.urlParam('id');
$.urlParam = function(name) {
var results = new RegExp('[\?&]' + name + '=([^&#]*)').exec(window.location.href);
if (results==null) {
return null;
}
return decodeURI(results[1]) || 0;
};

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/*!
* Bootstrap Reboot v4.0.0 (https://getbootstrap.com)
* Copyright 2011-2018 The Bootstrap Authors
* Copyright 2011-2018 Twitter, Inc.
* Licensed under MIT (https://github.com/twbs/bootstrap/blob/master/LICENSE)
* Forked from Normalize.css, licensed MIT (https://github.com/necolas/normalize.css/blob/master/LICENSE.md)
*/
*,
*::before,
*::after {
box-sizing: border-box;
}
html {
font-family: sans-serif;
line-height: 1.15;
-webkit-text-size-adjust: 100%;
-ms-text-size-adjust: 100%;
-ms-overflow-style: scrollbar;
-webkit-tap-highlight-color: transparent;
}
@-ms-viewport {
width: device-width;
}
article, aside, dialog, figcaption, figure, footer, header, hgroup, main, nav, section {
display: block;
}
body {
margin: 0;
font-family: -apple-system, BlinkMacSystemFont, "Segoe UI", Roboto, "Helvetica Neue", Arial, sans-serif, "Apple Color Emoji", "Segoe UI Emoji", "Segoe UI Symbol";
font-size: 1rem;
font-weight: 400;
line-height: 1.5;
color: #212529;
text-align: left;
background-color: #fff;
}
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outline: 0 !important;
}
hr {
box-sizing: content-box;
height: 0;
overflow: visible;
}
h1, h2, h3, h4, h5, h6 {
margin-top: 0;
margin-bottom: 0.5rem;
}
p {
margin-top: 0;
margin-bottom: 1rem;
}
abbr[title],
abbr[data-original-title] {
text-decoration: underline;
-webkit-text-decoration: underline dotted;
text-decoration: underline dotted;
cursor: help;
border-bottom: 0;
}
address {
margin-bottom: 1rem;
font-style: normal;
line-height: inherit;
}
ol,
ul,
dl {
margin-top: 0;
margin-bottom: 1rem;
}
ol ol,
ul ul,
ol ul,
ul ol {
margin-bottom: 0;
}
dt {
font-weight: 700;
}
dd {
margin-bottom: .5rem;
margin-left: 0;
}
blockquote {
margin: 0 0 1rem;
}
dfn {
font-style: italic;
}
b,
strong {
font-weight: bolder;
}
small {
font-size: 80%;
}
sub,
sup {
position: relative;
font-size: 75%;
line-height: 0;
vertical-align: baseline;
}
sub {
bottom: -.25em;
}
sup {
top: -.5em;
}
a {
color: #007bff;
text-decoration: none;
background-color: transparent;
-webkit-text-decoration-skip: objects;
}
a:hover {
color: #0056b3;
text-decoration: underline;
}
a:not([href]):not([tabindex]) {
color: inherit;
text-decoration: none;
}
a:not([href]):not([tabindex]):hover, a:not([href]):not([tabindex]):focus {
color: inherit;
text-decoration: none;
}
a:not([href]):not([tabindex]):focus {
outline: 0;
}
pre,
code,
kbd,
samp {
font-family: monospace, monospace;
font-size: 1em;
}
pre {
margin-top: 0;
margin-bottom: 1rem;
overflow: auto;
-ms-overflow-style: scrollbar;
}
figure {
margin: 0 0 1rem;
}
img {
vertical-align: middle;
border-style: none;
}
svg:not(:root) {
overflow: hidden;
}
table {
border-collapse: collapse;
}
caption {
padding-top: 0.75rem;
padding-bottom: 0.75rem;
color: #6c757d;
text-align: left;
caption-side: bottom;
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th {
text-align: inherit;
}
label {
display: inline-block;
margin-bottom: .5rem;
}
button {
border-radius: 0;
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outline: 1px dotted;
outline: 5px auto -webkit-focus-ring-color;
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select,
optgroup,
textarea {
margin: 0;
font-family: inherit;
font-size: inherit;
line-height: inherit;
}
button,
input {
overflow: visible;
}
button,
select {
text-transform: none;
}
button,
html [type="button"],
[type="reset"],
[type="submit"] {
-webkit-appearance: button;
}
button::-moz-focus-inner,
[type="button"]::-moz-focus-inner,
[type="reset"]::-moz-focus-inner,
[type="submit"]::-moz-focus-inner {
padding: 0;
border-style: none;
}
input[type="radio"],
input[type="checkbox"] {
box-sizing: border-box;
padding: 0;
}
input[type="date"],
input[type="time"],
input[type="datetime-local"],
input[type="month"] {
-webkit-appearance: listbox;
}
textarea {
overflow: auto;
resize: vertical;
}
fieldset {
min-width: 0;
padding: 0;
margin: 0;
border: 0;
}
legend {
display: block;
width: 100%;
max-width: 100%;
padding: 0;
margin-bottom: .5rem;
font-size: 1.5rem;
line-height: inherit;
color: inherit;
white-space: normal;
}
progress {
vertical-align: baseline;
}
[type="number"]::-webkit-inner-spin-button,
[type="number"]::-webkit-outer-spin-button {
height: auto;
}
[type="search"] {
outline-offset: -2px;
-webkit-appearance: none;
}
[type="search"]::-webkit-search-cancel-button,
[type="search"]::-webkit-search-decoration {
-webkit-appearance: none;
}
::-webkit-file-upload-button {
font: inherit;
-webkit-appearance: button;
}
output {
display: inline-block;
}
summary {
display: list-item;
cursor: pointer;
}
template {
display: none;
}
[hidden] {
display: none !important;
}
/*# sourceMappingURL=bootstrap-reboot.css.map */

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/*!
* Bootstrap Reboot v4.0.0 (https://getbootstrap.com)
* Copyright 2011-2018 The Bootstrap Authors
* Copyright 2011-2018 Twitter, Inc.
* Licensed under MIT (https://github.com/twbs/bootstrap/blob/master/LICENSE)
* Forked from Normalize.css, licensed MIT (https://github.com/necolas/normalize.css/blob/master/LICENSE.md)
*/*,::after,::before{box-sizing:border-box}html{font-family:sans-serif;line-height:1.15;-webkit-text-size-adjust:100%;-ms-text-size-adjust:100%;-ms-overflow-style:scrollbar;-webkit-tap-highlight-color:transparent}@-ms-viewport{width:device-width}article,aside,dialog,figcaption,figure,footer,header,hgroup,main,nav,section{display:block}body{margin:0;font-family:-apple-system,BlinkMacSystemFont,"Segoe UI",Roboto,"Helvetica Neue",Arial,sans-serif,"Apple Color Emoji","Segoe UI Emoji","Segoe UI Symbol";font-size:1rem;font-weight:400;line-height:1.5;color:#212529;text-align:left;background-color:#fff}[tabindex="-1"]:focus{outline:0!important}hr{box-sizing:content-box;height:0;overflow:visible}h1,h2,h3,h4,h5,h6{margin-top:0;margin-bottom:.5rem}p{margin-top:0;margin-bottom:1rem}abbr[data-original-title],abbr[title]{text-decoration:underline;-webkit-text-decoration:underline dotted;text-decoration:underline dotted;cursor:help;border-bottom:0}address{margin-bottom:1rem;font-style:normal;line-height:inherit}dl,ol,ul{margin-top:0;margin-bottom:1rem}ol ol,ol ul,ul ol,ul ul{margin-bottom:0}dt{font-weight:700}dd{margin-bottom:.5rem;margin-left:0}blockquote{margin:0 0 1rem}dfn{font-style:italic}b,strong{font-weight:bolder}small{font-size:80%}sub,sup{position:relative;font-size:75%;line-height:0;vertical-align:baseline}sub{bottom:-.25em}sup{top:-.5em}a{color:#007bff;text-decoration:none;background-color:transparent;-webkit-text-decoration-skip:objects}a:hover{color:#0056b3;text-decoration:underline}a:not([href]):not([tabindex]){color:inherit;text-decoration:none}a:not([href]):not([tabindex]):focus,a:not([href]):not([tabindex]):hover{color:inherit;text-decoration:none}a:not([href]):not([tabindex]):focus{outline:0}code,kbd,pre,samp{font-family:monospace,monospace;font-size:1em}pre{margin-top:0;margin-bottom:1rem;overflow:auto;-ms-overflow-style:scrollbar}figure{margin:0 0 1rem}img{vertical-align:middle;border-style:none}svg:not(:root){overflow:hidden}table{border-collapse:collapse}caption{padding-top:.75rem;padding-bottom:.75rem;color:#6c757d;text-align:left;caption-side:bottom}th{text-align:inherit}label{display:inline-block;margin-bottom:.5rem}button{border-radius:0}button:focus{outline:1px dotted;outline:5px auto -webkit-focus-ring-color}button,input,optgroup,select,textarea{margin:0;font-family:inherit;font-size:inherit;line-height:inherit}button,input{overflow:visible}button,select{text-transform:none}[type=reset],[type=submit],button,html [type=button]{-webkit-appearance:button}[type=button]::-moz-focus-inner,[type=reset]::-moz-focus-inner,[type=submit]::-moz-focus-inner,button::-moz-focus-inner{padding:0;border-style:none}input[type=checkbox],input[type=radio]{box-sizing:border-box;padding:0}input[type=date],input[type=datetime-local],input[type=month],input[type=time]{-webkit-appearance:listbox}textarea{overflow:auto;resize:vertical}fieldset{min-width:0;padding:0;margin:0;border:0}legend{display:block;width:100%;max-width:100%;padding:0;margin-bottom:.5rem;font-size:1.5rem;line-height:inherit;color:inherit;white-space:normal}progress{vertical-align:baseline}[type=number]::-webkit-inner-spin-button,[type=number]::-webkit-outer-spin-button{height:auto}[type=search]{outline-offset:-2px;-webkit-appearance:none}[type=search]::-webkit-search-cancel-button,[type=search]::-webkit-search-decoration{-webkit-appearance:none}::-webkit-file-upload-button{font:inherit;-webkit-appearance:button}output{display:inline-block}summary{display:list-item;cursor:pointer}template{display:none}[hidden]{display:none!important}
/*# sourceMappingURL=bootstrap-reboot.min.css.map */

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backend/web/static/style.css vendored Normal file
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div.loginpanel {
width: 644px;
margin-left: auto;
margin-right: auto;
margin-top: 100px;
}
button {
margin-top: 10px;
}

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<!doctype html>
<html>
<link rel="stylesheet" href="static/css/bootstrap.min.css">
<link rel="stylesheet" href="static/style.css">
<script src="static/js/bootstrap.bundle.min.js"></script>
<script src="static/js/jquery-3.6.0.min.js"></script>
<script src="static/js/js.cookie.min.js"></script>
<script src="static/base.js"></script>
<title>Stackspin Account</title>
</html>
<body>
<script>
var api_url = '{{ api_url }}';
// Actions
$(document).ready(function() {
check_flow_expired();
});
</script>
<div class="loginpanel">
<div id="contentFlowExpired"
class='alert alert-warning'
style='display:none'>Your request is expired. Please resubmit your request faster.</div>
<img src='static/logo.svg'/><br/><br/>
{% block content %}{% endblock %}
</div>

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{% extends 'base.html' %}
{% block content %}
<script>
var api_url = '{{ api_url }}';
// Actions
$(document).ready(function() {
flow_settings();
});
</script>
<h2>Error: {{ error_message['error']['status'] }}</h2>
<div class=error-div>
{{ error_message['error']['message'] }}
{{ error_message['error']['reason'] }}
</div>
{% endblock %}

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{% extends 'base.html' %}
{% block content %}
<script>
var api_url = '{{ api_url }}';
// Actions
$(document).ready(function() {
//flow_login();
check_flow_auth();
});
</script>
<div id="contentMessages"></div>
<div id="contentWelcome">Welcome {{ id['name'] }},<br/><br/>
You are already logged in.
</div>
{% endblock %}

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{% extends 'base.html' %}
{% block content %}
<script>
var api_url = '{{ api_url }}';
// Actions
$(document).ready(function() {
flow_login();
});
</script>
<div id="contentMessages"></div>
<div id="contentLogin"></div>
<div id="contentHelp">
<a href='recovery'>Forget password?</a> | <a href='https://stackspin.net'>About stackspin</a>
</div>
{% endblock %}

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{% extends 'base.html' %}
{% block content %}
<script>
var api_url = '{{ api_url }}';
// Actions
$(document).ready(function() {
flow_recover();
});
</script>
<div id="contentMessages"></div>
<div id="contentRecover"></div>
<div id="contentRecoverRequested" style='display:none'>
Thank you for your request. We have sent you an email to recover
your account. Please check your e-mail and complete the account
recovery. You have limited time to complete this</div>
<div id="contentHelp">
<a href='login'>Back to login page</a> | <a href='https://stackspin.org'>About stackspin</a>
</div>
{% endblock %}

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{% extends 'base.html' %}
{% block content %}
<script>
var api_url = '{{ api_url }}';
// Actions
$(document).ready(function() {
flow_settings();
});
</script>
<div id="contentMessages"></div>
<div id="contentProfileSaved"
class='alert alert-success'
style='display:none'>Successfuly saved new settings.</div>
<div id="contentProfileSaveFailed"
class='alert alert-danger'
style='display:none'>Your changes are not saved. Please check the fields for errors.</div>
<div id="contentProfile"></div>
<div id="contentPassword"></div>
{% endblock %}